SUNGKYUNKWAN UNIVERSITY성균관대학교 에너지 저장 연구실
ESRL publications · 연구 성과

The science behind
better batteries

양극과 고체전해질, 소재의 발견에서 작동 원리의 이해까지 — ESRL의 연구 기록

164Listed publications · 게재 논문
10,964Google Scholar citations ↗
55h-index · Google Scholar
126i10-index · Google Scholar

Google Scholar · 확인일 / Checked 2026-09-29 · View profile ↗

Since 2021 · 최근 지표

Citations 6,472 · h-index 45 · i10-index 115

About IF & JCR · 지표 기준

IF와 JCR 순위는 모든 논문에 대해 게재연도의 전년도 저널 지표를 사용합니다. 예를 들어 2026년 논문에는 2025년, 2025년 논문에는 2024년 지표를 표시합니다. JCR 상위 %는 (분야 내 순위 ÷ 해당 분야 저널 수) × 100으로 계산하며, 여러 분야 중 가장 낮은 값을 표시합니다. IF는 소수 첫째 자리로 통일하며, 근거 자료를 확보한 항목만 표시합니다.

All papers use journal metrics from the year before publication: 2026 papers use 2025 metrics, and 2025 papers use 2024 metrics. JCR Top % is rank divided by category size × 100, using the lowest value across categories. IF values are shown to one decimal place. Sources and categories are available within each record.

164 publications

† / ‡ Equal contribution · * Corresponding author

Nano-Micro Letters, Accepted (2026)2026

A Fluorine-Free Organic–Inorganic Heterostructure Binder for High-Energy Lithium-Ion Batteries Operable at 4.5 V and 60 °C with Minimized Binder Content

U. Jeong†, J. Choe†, J. Ahn†, J. Jang, J. Kwon, J.-K. Yoo, J. Yoon, M. J. Kang, J. H. Park, M.-H. Lee, J.-H. Choi, D. J. Kang*, J. Kim*, J. M. Yuk*, H.-G. Im*

Lithium / Li
IF 38.5JCR Top 1.05%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 2/191 journals

  • PHYSICS, APPLIED2/191 journals · Top 1.05%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY5/472 journals · Top 1.06%
  • NANOSCIENCE & NANOTECHNOLOGY2/148 journals · Top 1.35%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

U. Jeong†, J. Choe†, J. Ahn†, J. Jang, J. Kwon, J.-K. Yoo, J. Yoon, M. J. Kang, J. H. Park, M.-H. Lee, J.-H. Choi, D. J. Kang*, J. Kim*, J. M. Yuk*, H.-G. Im*. A Fluorine-Free Organic–Inorganic Heterostructure Binder for High-Energy Lithium-Ion Batteries Operable at 4.5 V and 60 °C with Minimized Binder Content. Nano-Micro Letters, Accepted (2026).

@article{esrl2026paper1,
  title = {A Fluorine-Free Organic–Inorganic Heterostructure Binder for High-Energy Lithium-Ion Batteries Operable at 4.5 V and 60 °C with Minimized Binder Content},
  author = {U. Jeong and J. Choe and J. Ahn and J. Jang and J. Kwon and J.-K. Yoo and J. Yoon and M. J. Kang and J. H. Park and M.-H. Lee and J.-H. Choi and D. J. Kang and J. Kim and J. M. Yuk and H.-G. Im},
  journal = {Nano-Micro Letters},
  year = {2026}
}
ACS Energy Letters, Accepted (2026)2026

Stabilizing High-Voltage Operation in O3-Type Na-Layered Cathodes by Suppressing Distortion-Driven Fe Migration

T. Kim, H. Kweon, H. Lee, L. Jang, B. Ku, M. Choi, S. Lim, H. Choo, L. Eom, J. Kwon, M.-K. Cho, Y. H. Jung, H.-G. Jung, J. Kim*

Sodium / Na
IF 17.5JCR Top 6.14%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 29/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY29/472 journals · Top 6.14%
  • ENERGY & FUELS12/191 journals · Top 6.28%
  • CHEMISTRY, PHYSICAL13/191 journals · Top 6.81%
  • ELECTROCHEMISTRY3/44 journals · Top 6.82%
  • NANOSCIENCE & NANOTECHNOLOGY12/148 journals · Top 8.11%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

T. Kim, H. Kweon, H. Lee, L. Jang, B. Ku, M. Choi, S. Lim, H. Choo, L. Eom, J. Kwon, M.-K. Cho, Y. H. Jung, H.-G. Jung, J. Kim*. Stabilizing High-Voltage Operation in O3-Type Na-Layered Cathodes by Suppressing Distortion-Driven Fe Migration. ACS Energy Letters, Accepted (2026).

@article{esrl2026paper2,
  title = {Stabilizing High-Voltage Operation in O3-Type Na-Layered Cathodes by Suppressing Distortion-Driven Fe Migration},
  author = {T. Kim and H. Kweon and H. Lee and L. Jang and B. Ku and M. Choi and S. Lim and H. Choo and L. Eom and J. Kwon and M.-K. Cho and Y. H. Jung and H.-G. Jung and J. Kim},
  journal = {ACS Energy Letters},
  year = {2026},
  url = {https://doi.org/10.1021/acsenergylett.6c02530},
  doi = {10.1021/acsenergylett.6c02530}
}
Advanced Science, Accepted (2026)2026

Basal Plane Graphene Coated Zn Powder for High Performance Aqueous Zn Metal Batteries

D. Kim, D. Jeong, K. Kim, V.‐C. Ho, J. Kim, H.‐G. Jung, J. H. Kim, G. Jeong, J. Mun

IF 14.1JCR Top 9.60%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · Published Top %

  • CHEMISTRY, MULTIDISCIPLINARYPublished Top % · Top 9.60%
  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 9.75%
  • NANOSCIENCE & NANOTECHNOLOGYPublished Top % · Top 12.16%

IF · Wiley · JCR Top % · PNU Scholar

Citation & BibTeX · 인용 정보

D. Kim, D. Jeong, K. Kim, V.‐C. Ho, J. Kim, H.‐G. Jung, J. H. Kim, G. Jeong, J. Mun. Basal Plane Graphene Coated Zn Powder for High Performance Aqueous Zn Metal Batteries. Advanced Science, Accepted (2026).

@article{esrl2026paper3,
  title = {Basal Plane Graphene Coated Zn Powder for High Performance Aqueous Zn Metal Batteries},
  author = {D. Kim and D. Jeong and K. Kim and V.‐C. Ho and J. Kim and H.‐G. Jung and J. H. Kim and G. Jeong and J. Mun},
  journal = {Advanced Science},
  year = {2026},
  url = {https://doi.org/10.1002/advs.77287},
  doi = {10.1002/advs.77287}
}
Advanced Science, Accepted (2026)2026

A Dispersant-Driven Carbon-Binder Domains Homogeneity in High-Energy-Density Electrodes for Lithium-Ion Batteries

D.-S. Kwon, M. Y. Seo, J. Ahn†, Y.-J. Jeong, W. Ko, W. Shin, M. J. Kim, J. Lee, W.-Y. Jeon, J. Bang, M.-J. Choi, K. I. Kim, J. J. Eom, S. Y. Oh, J. Kim*, Y. J. Kim, J.-K. Yoo

Lithium / Li
IF 14.1JCR Top 9.60%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · Published Top %

  • CHEMISTRY, MULTIDISCIPLINARYPublished Top % · Top 9.60%
  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 9.75%
  • NANOSCIENCE & NANOTECHNOLOGYPublished Top % · Top 12.16%

IF · Wiley · JCR Top % · PNU Scholar

Citation & BibTeX · 인용 정보

D.-S. Kwon, M. Y. Seo, J. Ahn†, Y.-J. Jeong, W. Ko, W. Shin, M. J. Kim, J. Lee, W.-Y. Jeon, J. Bang, M.-J. Choi, K. I. Kim, J. J. Eom, S. Y. Oh, J. Kim*, Y. J. Kim, J.-K. Yoo. A Dispersant-Driven Carbon-Binder Domains Homogeneity in High-Energy-Density Electrodes for Lithium-Ion Batteries. Advanced Science, Accepted (2026).

@article{esrl2026paper4,
  title = {A Dispersant-Driven Carbon-Binder Domains Homogeneity in High-Energy-Density Electrodes for Lithium-Ion Batteries},
  author = {D.-S. Kwon and M. Y. Seo and J. Ahn and Y.-J. Jeong and W. Ko and W. Shin and M. J. Kim and J. Lee and W.-Y. Jeon and J. Bang and M.-J. Choi and K. I. Kim and J. J. Eom and S. Y. Oh and J. Kim and Y. J. Kim and J.-K. Yoo},
  journal = {Advanced Science},
  year = {2026},
  url = {https://doi.org/10.1002/advs.77293},
  doi = {10.1002/advs.77293}
}
Energy Storage Materials, 90, 105375 (2026)2026

Threshold-Triggered Redox Modulation Maximizing Initial Na+ Extraction in Fe–Mn-Dominant P2-Type Na-Layered Cathodes

S. Lim, J. Kim, B. Ku, M. Choi, H Lee, J. Kwon, L. Jang, T. Kim, H.-G. Jung, J. Mun, J. Kim*

Sodium / Na
IF 19.3JCR Top 5.30%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 25/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY25/472 journals · Top 5.30%
  • CHEMISTRY, PHYSICAL12/191 journals · Top 6.28%
  • NANOSCIENCE & NANOTECHNOLOGY10/148 journals · Top 6.76%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

S. Lim, J. Kim, B. Ku, M. Choi, H Lee, J. Kwon, L. Jang, T. Kim, H.-G. Jung, J. Mun, J. Kim*. Threshold-Triggered Redox Modulation Maximizing Initial Na+ Extraction in Fe–Mn-Dominant P2-Type Na-Layered Cathodes. Energy Storage Materials, 90, 105375 (2026).

@article{esrl2026paper5,
  title = {Threshold-Triggered Redox Modulation Maximizing Initial Na+ Extraction in Fe–Mn-Dominant P2-Type Na-Layered Cathodes},
  author = {S. Lim and J. Kim and B. Ku and M. Choi and H Lee and J. Kwon and L. Jang and T. Kim and H.-G. Jung and J. Mun and J. Kim},
  journal = {Energy Storage Materials},
  year = {2026},
  url = {https://doi.org/10.1016/j.ensm.2026.105375},
  doi = {10.1016/j.ensm.2026.105375}
}
Advanced Science, 13, e76228 (2026)2026

A Review of Failure Modes and Safety Strategies of Lithium-ion Batteries from Materials to Systems

J. H. Yang, J. Y. Sung, H. Kweon†, S. Kim, B. Kim, J. Kim*, J. Mun, J. H. Kim, K. J. Kim

Lithium / Li
IF 14.1JCR Top 9.60%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · Published Top %

  • CHEMISTRY, MULTIDISCIPLINARYPublished Top % · Top 9.60%
  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 9.75%
  • NANOSCIENCE & NANOTECHNOLOGYPublished Top % · Top 12.16%

IF · Wiley · JCR Top % · PNU Scholar

Citation & BibTeX · 인용 정보

J. H. Yang, J. Y. Sung, H. Kweon†, S. Kim, B. Kim, J. Kim*, J. Mun, J. H. Kim, K. J. Kim. A Review of Failure Modes and Safety Strategies of Lithium-ion Batteries from Materials to Systems. Advanced Science, 13, e76228 (2026).

@article{esrl2026paper6,
  title = {A Review of Failure Modes and Safety Strategies of Lithium-ion Batteries from Materials to Systems},
  author = {J. H. Yang and J. Y. Sung and H. Kweon and S. Kim and B. Kim and J. Kim and J. Mun and J. H. Kim and K. J. Kim},
  journal = {Advanced Science},
  year = {2026},
  url = {https://doi.org/10.1002/advs.76228},
  doi = {10.1002/advs.76228}
}
Applied Catalysis B: Environment and Energy, 398, 127014 (2026)2026

Artificial Intelligence-driven mechanistic insights in electrocatalysis

J. Kim, S. Woo, H.-G. Jung, J. Kim*, J. Mun, J. H. Kim

IF 19.7JCR Top 2.27%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, ENVIRONMENTAL · 2/88 journals

  • ENGINEERING, ENVIRONMENTAL2/88 journals · Top 2.27%
  • ENGINEERING, CHEMICAL5/183 journals · Top 2.73%
  • CHEMISTRY, PHYSICAL11/191 journals · Top 5.76%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Kim, S. Woo, H.-G. Jung, J. Kim*, J. Mun, J. H. Kim. Artificial Intelligence-driven mechanistic insights in electrocatalysis. Applied Catalysis B: Environment and Energy, 398, 127014 (2026).

@article{esrl2026paper7,
  title = {Artificial Intelligence-driven mechanistic insights in electrocatalysis},
  author = {J. Kim and S. Woo and H.-G. Jung and J. Kim and J. Mun and J. H. Kim},
  journal = {Applied Catalysis B: Environment and Energy},
  year = {2026},
  url = {https://doi.org/10.1016/j.apcatb.2026.127014},
  doi = {10.1016/j.apcatb.2026.127014}
}
Energy Storage Materials, 89, 105167 (2026)2026

Enhanced Interfacial Stability and Electrochemical Performance via Cathode-Adhesion-Enhanced Coatings for All-Solid-State Batteries

J. Kim†, H. Lee†, T. Kim, E. Ryu,I. Seo, J. Seong, C. Lim, J. Kim*

Solid-stateInterfaces
IF 19.3JCR Top 5.30%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 25/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY25/472 journals · Top 5.30%
  • CHEMISTRY, PHYSICAL12/191 journals · Top 6.28%
  • NANOSCIENCE & NANOTECHNOLOGY10/148 journals · Top 6.76%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

J. Kim†, H. Lee†, T. Kim, E. Ryu,I. Seo, J. Seong, C. Lim, J. Kim*. Enhanced Interfacial Stability and Electrochemical Performance via Cathode-Adhesion-Enhanced Coatings for All-Solid-State Batteries. Energy Storage Materials, 89, 105167 (2026).

@article{esrl2026paper8,
  title = {Enhanced Interfacial Stability and Electrochemical Performance via Cathode-Adhesion-Enhanced Coatings for All-Solid-State Batteries},
  author = {J. Kim and H. Lee and T. Kim and E. Ryu and I. Seo and J. Seong and C. Lim and J. Kim},
  journal = {Energy Storage Materials},
  year = {2026},
  url = {https://doi.org/10.1016/j.ensm.2026.105167},
  doi = {10.1016/j.ensm.2026.105167}
}
ACS Nano, 20, 10556–10569 (2026)2026

Fast and Trap-Minimized Li Transport via Size-Mismatch-Driven Cation-Ordering Control in Li-Excess Disordered Rocksalt Cathodes

J. Ahn†, B. Ku†, H. Kweon, H. Lee, H. Ahn, M. Choi, M. H. Lee, M. Yoon, J. Choi, J Hong, J. Kim*

Lithium / Li
IF 17.3JCR Top 6.36%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 30/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY30/472 journals · Top 6.36%
  • CHEMISTRY, MULTIDISCIPLINARY17/250 journals · Top 6.80%
  • CHEMISTRY, PHYSICAL14/191 journals · Top 7.33%
  • NANOSCIENCE & NANOTECHNOLOGY13/148 journals · Top 8.78%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

J. Ahn†, B. Ku†, H. Kweon, H. Lee, H. Ahn, M. Choi, M. H. Lee, M. Yoon, J. Choi, J Hong, J. Kim*. Fast and Trap-Minimized Li Transport via Size-Mismatch-Driven Cation-Ordering Control in Li-Excess Disordered Rocksalt Cathodes. ACS Nano, 20, 10556–10569 (2026).

@article{esrl2026paper9,
  title = {Fast and Trap-Minimized Li Transport via Size-Mismatch-Driven Cation-Ordering Control in Li-Excess Disordered Rocksalt Cathodes},
  author = {J. Ahn and B. Ku and H. Kweon and H. Lee and H. Ahn and M. Choi and M. H. Lee and M. Yoon and J. Choi and J Hong and J. Kim},
  journal = {ACS Nano},
  year = {2026},
  url = {https://doi.org/10.1021/acsnano.5c22044},
  doi = {10.1021/acsnano.5c22044}
}
Nano-Micro Letters, 18, 355 (2026)2026

Growth-Directing Nanostructured Interfaces via Block Copolymer-Templated Au Nanoseed Arrays for Stabilized Zinc Anodes in Lean-Zinc Batteries

D. W. Hae, H. Lee†, H. J. Kook, G. Kim, S. Kim, J. Choi, M. P. Kim, S. H. Kang, W. J. Lee, Y.-G. Lee, H. M. Jin, J. Kim*, D. O Shin

ZincInterfaces
IF 38.5JCR Top 1.05%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 2/191 journals

  • PHYSICS, APPLIED2/191 journals · Top 1.05%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY5/472 journals · Top 1.06%
  • NANOSCIENCE & NANOTECHNOLOGY2/148 journals · Top 1.35%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

D. W. Hae, H. Lee†, H. J. Kook, G. Kim, S. Kim, J. Choi, M. P. Kim, S. H. Kang, W. J. Lee, Y.-G. Lee, H. M. Jin, J. Kim*, D. O Shin. Growth-Directing Nanostructured Interfaces via Block Copolymer-Templated Au Nanoseed Arrays for Stabilized Zinc Anodes in Lean-Zinc Batteries. Nano-Micro Letters, 18, 355 (2026).

@article{esrl2026paper10,
  title = {Growth-Directing Nanostructured Interfaces via Block Copolymer-Templated Au Nanoseed Arrays for Stabilized Zinc Anodes in Lean-Zinc Batteries},
  author = {D. W. Hae and H. Lee and H. J. Kook and G. Kim and S. Kim and J. Choi and M. P. Kim and S. H. Kang and W. J. Lee and Y.-G. Lee and H. M. Jin and J. Kim and D. O Shin},
  journal = {Nano-Micro Letters},
  year = {2026},
  url = {https://doi.org/10.1007/s40820-026-02167-y},
  doi = {10.1007/s40820-026-02167-y}
}
ACS Nano, 20, 4799–4807 (2026)2026

NaF@MnO-based sacrificial cathode/separator composite for boosting the energy density of sodium-ion batteries

S. J. Park, S.-Y. Lee†, Y. M. Kim, J. Kang, J. K. Seo, Y.-J. Kim, J. Kim*, K. J. Kim

Sodium / Na
IF 17.3JCR Top 6.36%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 30/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY30/472 journals · Top 6.36%
  • CHEMISTRY, MULTIDISCIPLINARY17/250 journals · Top 6.80%
  • CHEMISTRY, PHYSICAL14/191 journals · Top 7.33%
  • NANOSCIENCE & NANOTECHNOLOGY13/148 journals · Top 8.78%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

S. J. Park, S.-Y. Lee†, Y. M. Kim, J. Kang, J. K. Seo, Y.-J. Kim, J. Kim*, K. J. Kim. NaF@MnO-based sacrificial cathode/separator composite for boosting the energy density of sodium-ion batteries. ACS Nano, 20, 4799–4807 (2026).

@article{esrl2026paper11,
  title = {NaF@MnO-based sacrificial cathode/separator composite for boosting the energy density of sodium-ion batteries},
  author = {S. J. Park and S.-Y. Lee and Y. M. Kim and J. Kang and J. K. Seo and Y.-J. Kim and J. Kim and K. J. Kim},
  journal = {ACS Nano},
  year = {2026},
  url = {https://doi.org/10.1021/acsnano.5c16400},
  doi = {10.1021/acsnano.5c16400}
}
Advanced Energy Materials, 16, e06130 (2026)2026

Enhanced Fast-Charging Performance of High-Mass-Loading Mn-Rich Li[Mn1-xFex]PO4 Cathodes via LiF-Less Cathode–Electrolyte Interphase

B. Ku†, L. Jang†, H. Kweon, J. Ahn, S. Hwang, J. Lee, M. Choi, S. Yoo, K. Yoo, K.-Y. Park, J. Kim*

Lithium / LiInterfaces
IF 25.5JCR Top 2.54%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/472 journals · Top 2.54%
  • ENERGY & FUELS5/191 journals · Top 2.62%
  • CHEMISTRY, PHYSICAL6/191 journals · Top 3.14%
  • PHYSICS, APPLIED6/191 journals · Top 3.14%
  • PHYSICS, CONDENSED MATTER4/81 journals · Top 4.94%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

B. Ku†, L. Jang†, H. Kweon, J. Ahn, S. Hwang, J. Lee, M. Choi, S. Yoo, K. Yoo, K.-Y. Park, J. Kim*. Enhanced Fast-Charging Performance of High-Mass-Loading Mn-Rich Li[Mn1-xFex]PO4 Cathodes via LiF-Less Cathode–Electrolyte Interphase. Advanced Energy Materials, 16, e06130 (2026).

@article{esrl2026paper12,
  title = {Enhanced Fast-Charging Performance of High-Mass-Loading Mn-Rich Li[Mn1-xFex]PO4 Cathodes via LiF-Less Cathode–Electrolyte Interphase},
  author = {B. Ku and L. Jang and H. Kweon and J. Ahn and S. Hwang and J. Lee and M. Choi and S. Yoo and K. Yoo and K.-Y. Park and J. Kim},
  journal = {Advanced Energy Materials},
  year = {2026},
  url = {https://doi.org/10.1002/aenm.202506130},
  doi = {10.1002/aenm.202506130}
}
ACS Energy Letters, 11, 2103–2114 (2026)2026

Bimodal Composite Cathodes Advancing the Chemo-Mechanical Integrity and Kinetics for All-Solid-State Batteries

H. Oh, U. Jeong, J. Choi, J. Lim, J. T. Kim, H.-J. Shin, J.-y. Im, H.-W. Gong, J.-P. Ahn, Y. M. Lee, J. Kim, J. Mun, K. Y. Chung, S. H. Oh, J.-W. Lee, S.-Y. Lee, H.-G. Jung

Solid-state
IF 17.5JCR Top 6.14%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 29/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY29/472 journals · Top 6.14%
  • ENERGY & FUELS12/191 journals · Top 6.28%
  • CHEMISTRY, PHYSICAL13/191 journals · Top 6.81%
  • ELECTROCHEMISTRY3/44 journals · Top 6.82%
  • NANOSCIENCE & NANOTECHNOLOGY12/148 journals · Top 8.11%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

H. Oh, U. Jeong, J. Choi, J. Lim, J. T. Kim, H.-J. Shin, J.-y. Im, H.-W. Gong, J.-P. Ahn, Y. M. Lee, J. Kim, J. Mun, K. Y. Chung, S. H. Oh, J.-W. Lee, S.-Y. Lee, H.-G. Jung. Bimodal Composite Cathodes Advancing the Chemo-Mechanical Integrity and Kinetics for All-Solid-State Batteries. ACS Energy Letters, 11, 2103–2114 (2026).

@article{esrl2026paper13,
  title = {Bimodal Composite Cathodes Advancing the Chemo-Mechanical Integrity and Kinetics for All-Solid-State Batteries},
  author = {H. Oh and U. Jeong and J. Choi and J. Lim and J. T. Kim and H.-J. Shin and J.-y. Im and H.-W. Gong and J.-P. Ahn and Y. M. Lee and J. Kim and J. Mun and K. Y. Chung and S. H. Oh and J.-W. Lee and S.-Y. Lee and H.-G. Jung},
  journal = {ACS Energy Letters},
  year = {2026},
  url = {https://doi.org/10.1021/acsenergylett.5c03923},
  doi = {10.1021/acsenergylett.5c03923}
}
Energy & Environmental Science, 19, 1944–1953 (2026)2026

Integrated one-step dry process enabling prelithiated thick electrodes without primer coating for high energy density and initial coulombic efficiency

H.-W. Lee, W. Jeong, S. S. Park, H.-J. Ji, J.-S. Woo, J. Lee, Y.-J. An, Y.-C. Hwang, D.-H. Kim, H. Chang, M. Kim, M. Jeong, M. Yoon, D. Lee, J. Kim, Z.-L. Xu, T. Song, J. Moon, J. Choi, W.-J. Kwak

Interfaces
IF 30.5JCR Top 1.01%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENVIRONMENTAL SCIENCES · 4/395 journals

  • ENVIRONMENTAL SCIENCES4/395 journals · Top 1.01%
  • ENGINEERING, CHEMICAL2/183 journals · Top 1.09%
  • CHEMISTRY, MULTIDISCIPLINARY4/250 journals · Top 1.60%
  • ENERGY & FUELS4/191 journals · Top 2.09%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H.-W. Lee, W. Jeong, S. S. Park, H.-J. Ji, J.-S. Woo, J. Lee, Y.-J. An, Y.-C. Hwang, D.-H. Kim, H. Chang, M. Kim, M. Jeong, M. Yoon, D. Lee, J. Kim, Z.-L. Xu, T. Song, J. Moon, J. Choi, W.-J. Kwak. Integrated one-step dry process enabling prelithiated thick electrodes without primer coating for high energy density and initial coulombic efficiency. Energy & Environmental Science, 19, 1944–1953 (2026).

@article{esrl2026paper14,
  title = {Integrated one-step dry process enabling prelithiated thick electrodes without primer coating for high energy density and initial coulombic efficiency},
  author = {H.-W. Lee and W. Jeong and S. S. Park and H.-J. Ji and J.-S. Woo and J. Lee and Y.-J. An and Y.-C. Hwang and D.-H. Kim and H. Chang and M. Kim and M. Jeong and M. Yoon and D. Lee and J. Kim and Z.-L. Xu and T. Song and J. Moon and J. Choi and W.-J. Kwak},
  journal = {Energy \& Environmental Science},
  year = {2026},
  url = {https://doi.org/10.1039/d5ee05739f},
  doi = {10.1039/d5ee05739f}
}
Advanced Energy Materials, Accepted (2026)2026

From Materials to Systems: Challenges and Solutions for Fast-Charge/Discharge Na-Ion Batteries

B. Ku, S. Park, S. Hwang, S. Lim, W.-S. Yoon, J. Kim*

Sodium / Na
IF 25.5JCR Top 2.54%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/472 journals · Top 2.54%
  • ENERGY & FUELS5/191 journals · Top 2.62%
  • CHEMISTRY, PHYSICAL6/191 journals · Top 3.14%
  • PHYSICS, APPLIED6/191 journals · Top 3.14%
  • PHYSICS, CONDENSED MATTER4/81 journals · Top 4.94%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

B. Ku, S. Park, S. Hwang, S. Lim, W.-S. Yoon, J. Kim*. From Materials to Systems: Challenges and Solutions for Fast-Charge/Discharge Na-Ion Batteries. Advanced Energy Materials, Accepted (2026).

@article{esrl2026paper15,
  title = {From Materials to Systems: Challenges and Solutions for Fast-Charge/Discharge Na-Ion Batteries},
  author = {B. Ku and S. Park and S. Hwang and S. Lim and W.-S. Yoon and J. Kim},
  journal = {Advanced Energy Materials},
  year = {2026},
  url = {https://doi.org/10.1002/aenm.202504664},
  doi = {10.1002/aenm.202504664}
}
Advanced Energy Materials, 16, e05121 (2026)2026

Co-Free and Ni-Minimized Li- and Mn-Rich Layered Cathodes with Suppressed Structural Disordering for High-Performance and Cost-Effective LIBs

J. Ahn, H. Jang, H. Ahn, H. Kweon, S. Oh, S. Hwang, M. H. Lee, J. Hong, J. Kim*

Lithium / Li
IF 25.5JCR Top 2.54%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/472 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/472 journals · Top 2.54%
  • ENERGY & FUELS5/191 journals · Top 2.62%
  • CHEMISTRY, PHYSICAL6/191 journals · Top 3.14%
  • PHYSICS, APPLIED6/191 journals · Top 3.14%
  • PHYSICS, CONDENSED MATTER4/81 journals · Top 4.94%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

J. Ahn, H. Jang, H. Ahn, H. Kweon, S. Oh, S. Hwang, M. H. Lee, J. Hong, J. Kim*. Co-Free and Ni-Minimized Li- and Mn-Rich Layered Cathodes with Suppressed Structural Disordering for High-Performance and Cost-Effective LIBs. Advanced Energy Materials, 16, e05121 (2026).

@article{esrl2026paper16,
  title = {Co-Free and Ni-Minimized Li- and Mn-Rich Layered Cathodes with Suppressed Structural Disordering for High-Performance and Cost-Effective LIBs},
  author = {J. Ahn and H. Jang and H. Ahn and H. Kweon and S. Oh and S. Hwang and M. H. Lee and J. Hong and J. Kim},
  journal = {Advanced Energy Materials},
  year = {2026},
  url = {https://doi.org/10.1002/aenm.202505121},
  doi = {10.1002/aenm.202505121}
}
Energy & Environmental Materials, 9, e70156 (2026)2026

Redox-Mediating Mo2C Nanoparticles Confined Within Nitrogen- and Phosphorus-Codoped Amorphous Carbon Matrix for Lithium–Sulfur Batteries

W. I. Kim, M. J. Kim, H. Park, M. Hwang, J. S. Byun, J. Lee, J. Kim, H. S. Park

Lithium / Li
IF 13.8JCR Top 10.47%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 20/191 journals

  • CHEMISTRY, PHYSICAL20/191 journals · Top 10.47%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY51/472 journals · Top 10.81%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. I. Kim, M. J. Kim, H. Park, M. Hwang, J. S. Byun, J. Lee, J. Kim, H. S. Park. Redox-Mediating Mo2C Nanoparticles Confined Within Nitrogen- and Phosphorus-Codoped Amorphous Carbon Matrix for Lithium–Sulfur Batteries. Energy & Environmental Materials, 9, e70156 (2026).

@article{esrl2026paper17,
  title = {Redox-Mediating Mo2C Nanoparticles Confined Within Nitrogen- and Phosphorus-Codoped Amorphous Carbon Matrix for Lithium–Sulfur Batteries},
  author = {W. I. Kim and M. J. Kim and H. Park and M. Hwang and J. S. Byun and J. Lee and J. Kim and H. S. Park},
  journal = {Energy \& Environmental Materials},
  year = {2026},
  url = {https://doi.org/10.1002/eem2.70156},
  doi = {10.1002/eem2.70156}
}
Advanced Functional Materials, 36, e11385 (2026)2026

2D Phosphorene-Decorated Ni-Rich Layered Cathodes for High-Power and High-Energy Li-ion Batteries

J. Lee, K. Nam, B. Ku, M. Choi, M.-k. Cho, S. Y. Jung, J. Min , J. Ahn, Y. Lee, S.-Y. Lee, D. Lee, Y. S. Cho, D.-S. Kwon, J.-K. Yoo, J. Kang, J. Kim*

Lithium / Li
IF 19.9JCR Top 4.40%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 11/250 journals

  • CHEMISTRY, MULTIDISCIPLINARY11/250 journals · Top 4.40%
  • PHYSICS, APPLIED9/191 journals · Top 4.71%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY23/472 journals · Top 4.87%
  • CHEMISTRY, PHYSICAL10/191 journals · Top 5.24%
  • NANOSCIENCE & NANOTECHNOLOGY9/148 journals · Top 6.08%
  • PHYSICS, CONDENSED MATTER5/81 journals · Top 6.17%

IF · publisher · JCR · public annual record

Citation & BibTeX · 인용 정보

J. Lee, K. Nam, B. Ku, M. Choi, M.-k. Cho, S. Y. Jung, J. Min , J. Ahn, Y. Lee, S.-Y. Lee, D. Lee, Y. S. Cho, D.-S. Kwon, J.-K. Yoo, J. Kang, J. Kim*. 2D Phosphorene-Decorated Ni-Rich Layered Cathodes for High-Power and High-Energy Li-ion Batteries. Advanced Functional Materials, 36, e11385 (2026).

@article{esrl2026paper18,
  title = {2D Phosphorene-Decorated Ni-Rich Layered Cathodes for High-Power and High-Energy Li-ion Batteries},
  author = {J. Lee and K. Nam and B. Ku and M. Choi and M.-k. Cho and S. Y. Jung and J. Min and J. Ahn and Y. Lee and S.-Y. Lee and D. Lee and Y. S. Cho and D.-S. Kwon and J.-K. Yoo and J. Kang and J. Kim},
  journal = {Advanced Functional Materials},
  year = {2026},
  url = {https://doi.org/10.1002/adfm.202511385},
  doi = {10.1002/adfm.202511385}
}
Carbon Energy,8, e70108 (2026)2026

Ultra-High-Mass-Loading Electrodes with Enhanced Homogeneity Using High- Concentration Slurry for Lithium-Ion Batteries

J. K. Park, W. Shin, W. Jo, H.-J. Lee, W.-Y. Jeon, J. Ahn, J. Yoon, Y.-J. Jeong, J. Oh, M. Kang, M.-J. Choi, J. Joo, J. Kim, S.-K. Cho, J. D. Park, J. Nam, J.-K. Yoo

Lithium / Li
IF 21.4JCR Top 3.66%2025 metricsDetails · 지표 정보

논문 게재연도(2026)의 전년도인 2025년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · Published Top %

  • ENERGY & FUELSPublished Top % · Top 3.66%
  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 4.03%
  • CHEMISTRY, PHYSICALPublished Top % · Top 4.71%
  • NANOSCIENCE & NANOTECHNOLOGYPublished Top % · Top 4.73%

IF · Wiley · JCR Top % · PNU Scholar

Citation & BibTeX · 인용 정보

J. K. Park, W. Shin, W. Jo, H.-J. Lee, W.-Y. Jeon, J. Ahn, J. Yoon, Y.-J. Jeong, J. Oh, M. Kang, M.-J. Choi, J. Joo, J. Kim, S.-K. Cho, J. D. Park, J. Nam, J.-K. Yoo. Ultra-High-Mass-Loading Electrodes with Enhanced Homogeneity Using High- Concentration Slurry for Lithium-Ion Batteries. Carbon Energy,8, e70108 (2026).

@article{esrl2026paper19,
  title = {Ultra-High-Mass-Loading Electrodes with Enhanced Homogeneity Using High- Concentration Slurry for Lithium-Ion Batteries},
  author = {J. K. Park and W. Shin and W. Jo and H.-J. Lee and W.-Y. Jeon and J. Ahn and J. Yoon and Y.-J. Jeong and J. Oh and M. Kang and M.-J. Choi and J. Joo and J. Kim and S.-K. Cho and J. D. Park and J. Nam and J.-K. Yoo},
  journal = {Carbon Energy},
  year = {2026},
  url = {https://doi.org/10.1002/cey2.70108},
  doi = {10.1002/cey2.70108}
}
Interdisciplinary Materials, 4, 812-849 (2025)2025

Beyond the Limits of Lithium Iron Phosphate: Cutting-Edge Innovations Toward High Performance and Sustainability for Next-Generation Batteries

A. K. Kakarla, Z. Akhtar, J. Kim, M. Yoon, D. Lee, J. Choi

Lithium / Li
IF 31.6JCR Top 1.95%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 9/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY9/461 journals · Top 1.95%
  • CHEMISTRY, PHYSICAL4/185 journals · Top 2.16%
  • PHYSICS, APPLIED5/187 journals · Top 2.67%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

A. K. Kakarla, Z. Akhtar, J. Kim, M. Yoon, D. Lee, J. Choi. Beyond the Limits of Lithium Iron Phosphate: Cutting-Edge Innovations Toward High Performance and Sustainability for Next-Generation Batteries. Interdisciplinary Materials, 4, 812-849 (2025).

@article{esrl2025paper20,
  title = {Beyond the Limits of Lithium Iron Phosphate: Cutting-Edge Innovations Toward High Performance and Sustainability for Next-Generation Batteries},
  author = {A. K. Kakarla and Z. Akhtar and J. Kim and M. Yoon and D. Lee and J. Choi},
  journal = {Interdisciplinary Materials},
  year = {2025},
  url = {https://doi.org/10.1002/idm2.70024},
  doi = {10.1002/idm2.70024}
}
Energy Storage Materials, 82, 104570 (2025)2025

[Zn1K2]Fe3(PO4)2(P2O7) as a Zn2+/K+ Dual-Ion Cathode with Enhanced Diffusion Kinetics and Structural Stability for Aqueous Zinc-Ion Batteries

S. Hwang†, H. Kwoen†, J. Lee†, B. Ku, J. Ahn, H. Lee, L. Jang, H. J. Kook, H. Kim, D. O. Shin, J.Kim*

Zinc
IF 20.2JCR Top 4.77%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 22/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY22/461 journals · Top 4.77%
  • CHEMISTRY, PHYSICAL10/185 journals · Top 5.41%
  • NANOSCIENCE & NANOTECHNOLOGY8/147 journals · Top 5.44%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S. Hwang†, H. Kwoen†, J. Lee†, B. Ku, J. Ahn, H. Lee, L. Jang, H. J. Kook, H. Kim, D. O. Shin, J.Kim*. [Zn1K2]Fe3(PO4)2(P2O7) as a Zn2+/K+ Dual-Ion Cathode with Enhanced Diffusion Kinetics and Structural Stability for Aqueous Zinc-Ion Batteries. Energy Storage Materials, 82, 104570 (2025).

@article{esrl2025paper21,
  title = {[Zn1K2]Fe3(PO4)2(P2O7) as a Zn2+/K+ Dual-Ion Cathode with Enhanced Diffusion Kinetics and Structural Stability for Aqueous Zinc-Ion Batteries},
  author = {S. Hwang and H. Kwoen and J. Lee and B. Ku and J. Ahn and H. Lee and L. Jang and H. J. Kook and H. Kim and D. O. Shin and J.Kim},
  journal = {Energy Storage Materials},
  year = {2025},
  url = {https://doi.org/10.1016/j.ensm.2025.104570},
  doi = {10.1016/j.ensm.2025.104570}
}
Small, 21, e07292 (2025)2025

A Trailblazing Quenching Strategy for Simultaneous LiF Formation at Surface and Intergranular Interfaces for Enhanced Stability of High-Ni NCM Cathodes

S. J. Park, H. Lee, H.-B. Lee, H. Kweon, B. K. Park, J. W. Kim, F. Yun, F. Zhang, J. Kim*, Y.-M. Kim, K. J. Kim

Lithium / LiInterfaces
IF 12.1JCR Top 7.49%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 14/187 journals

  • PHYSICS, APPLIED14/187 journals · Top 7.49%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY42/461 journals · Top 9.11%
  • PHYSICS, CONDENSED MATTER8/80 journals · Top 10.00%
  • CHEMISTRY, MULTIDISCIPLINARY24/239 journals · Top 10.04%
  • NANOSCIENCE & NANOTECHNOLOGY17/147 journals · Top 11.56%
  • CHEMISTRY, PHYSICAL24/185 journals · Top 12.97%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S. J. Park, H. Lee, H.-B. Lee, H. Kweon, B. K. Park, J. W. Kim, F. Yun, F. Zhang, J. Kim*, Y.-M. Kim, K. J. Kim. A Trailblazing Quenching Strategy for Simultaneous LiF Formation at Surface and Intergranular Interfaces for Enhanced Stability of High-Ni NCM Cathodes. Small, 21, e07292 (2025).

@article{esrl2025paper22,
  title = {A Trailblazing Quenching Strategy for Simultaneous LiF Formation at Surface and Intergranular Interfaces for Enhanced Stability of High-Ni NCM Cathodes},
  author = {S. J. Park and H. Lee and H.-B. Lee and H. Kweon and B. K. Park and J. W. Kim and F. Yun and F. Zhang and J. Kim and Y.-M. Kim and K. J. Kim},
  journal = {Small},
  year = {2025},
  url = {https://doi.org/10.1002/smll.202507292},
  doi = {10.1002/smll.202507292}
}
ACS Energy Letters, 10, 4527−4534 (2025)2025

Pinning Effects of Heavy Elements for the Structural Stability of Ni-Based Layered Oxides

W. Lee, M. Choi, M. Kim, H. Lee, H. Park, J. Seok, S. Lee, J. Kim, S. Yun, Y. J. Yoon, W. S. Jung, J. P. Kim, Y. M. Choi, J. Kim, W.-S. Yoon

IF 18.9JCR Top 4.40%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 8/182 journals

  • ENERGY & FUELS8/182 journals · Top 4.40%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY24/461 journals · Top 5.21%
  • NANOSCIENCE & NANOTECHNOLOGY10/147 journals · Top 6.80%
  • ELECTROCHEMISTRY3/44 journals · Top 6.82%
  • CHEMISTRY, PHYSICAL13/185 journals · Top 7.03%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. Lee, M. Choi, M. Kim, H. Lee, H. Park, J. Seok, S. Lee, J. Kim, S. Yun, Y. J. Yoon, W. S. Jung, J. P. Kim, Y. M. Choi, J. Kim, W.-S. Yoon. Pinning Effects of Heavy Elements for the Structural Stability of Ni-Based Layered Oxides. ACS Energy Letters, 10, 4527−4534 (2025).

@article{esrl2025paper23,
  title = {Pinning Effects of Heavy Elements for the Structural Stability of Ni-Based Layered Oxides},
  author = {W. Lee and M. Choi and M. Kim and H. Lee and H. Park and J. Seok and S. Lee and J. Kim and S. Yun and Y. J. Yoon and W. S. Jung and J. P. Kim and Y. M. Choi and J. Kim and W.-S. Yoon},
  journal = {ACS Energy Letters},
  year = {2025},
  url = {https://doi.org/10.1021/acsenergylett.5c02563},
  doi = {10.1021/acsenergylett.5c02563}
}
Journal of Energy Chemistry, 109, 820-829 (2025)2025

Enhancing Power Capability and Fast Discharge Behavior in P2-type K Layered Cathodes through Structural Stabilization via Introducing Li-ions into TM Layers

H. Kweon†, J. Kang†, B. Ku, S. Hwang, J. Ahn, L. Jang, M. Choi, S. Lee, J. Lee, H. Lee, H.-G. Jung, J.-Y. Hwang, H.-D. Lim, J. Kim*

Lithium / Li
IF 14.9JCR Top 2.63%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, APPLIED · 2/76 journals

  • CHEMISTRY, APPLIED2/76 journals · Top 2.63%
  • ENGINEERING, CHEMICAL6/176 journals · Top 3.41%
  • ENERGY & FUELS11/182 journals · Top 6.04%
  • CHEMISTRY, PHYSICAL17/185 journals · Top 9.19%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H. Kweon†, J. Kang†, B. Ku, S. Hwang, J. Ahn, L. Jang, M. Choi, S. Lee, J. Lee, H. Lee, H.-G. Jung, J.-Y. Hwang, H.-D. Lim, J. Kim*. Enhancing Power Capability and Fast Discharge Behavior in P2-type K Layered Cathodes through Structural Stabilization via Introducing Li-ions into TM Layers. Journal of Energy Chemistry, 109, 820-829 (2025).

@article{esrl2025paper24,
  title = {Enhancing Power Capability and Fast Discharge Behavior in P2-type K Layered Cathodes through Structural Stabilization via Introducing Li-ions into TM Layers},
  author = {H. Kweon and J. Kang and B. Ku and S. Hwang and J. Ahn and L. Jang and M. Choi and S. Lee and J. Lee and H. Lee and H.-G. Jung and J.-Y. Hwang and H.-D. Lim and J. Kim},
  journal = {Journal of Energy Chemistry},
  year = {2025},
  url = {https://doi.org/10.1016/j.jechem.2025.06.019},
  doi = {10.1016/j.jechem.2025.06.019}
}
Nano Letters, 25, 10082-10089 (2025)2025

In situ formation of a lithiophilic Li–Zn alloy using dual-salt electrolyte additives for lithium metal batteries

Y.-J. Jo, H.-J. Shin, H. Kim, S. Kansara, J.-Y. Hwang, J. Kim, J. Mun, W.-J. Kwak, H.-G. Jung

Lithium / Li
IF 9.1JCR Top 12.30%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 23/187 journals

  • PHYSICS, APPLIED23/187 journals · Top 12.30%
  • PHYSICS, CONDENSED MATTER10/80 journals · Top 12.50%
  • CHEMISTRY, MULTIDISCIPLINARY34/239 journals · Top 14.23%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY68/461 journals · Top 14.75%
  • NANOSCIENCE & NANOTECHNOLOGY24/147 journals · Top 16.33%
  • CHEMISTRY, PHYSICAL34/185 journals · Top 18.38%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y.-J. Jo, H.-J. Shin, H. Kim, S. Kansara, J.-Y. Hwang, J. Kim, J. Mun, W.-J. Kwak, H.-G. Jung. In situ formation of a lithiophilic Li–Zn alloy using dual-salt electrolyte additives for lithium metal batteries. Nano Letters, 25, 10082-10089 (2025).

@article{esrl2025paper25,
  title = {In situ formation of a lithiophilic Li–Zn alloy using dual-salt electrolyte additives for lithium metal batteries},
  author = {Y.-J. Jo and H.-J. Shin and H. Kim and S. Kansara and J.-Y. Hwang and J. Kim and J. Mun and W.-J. Kwak and H.-G. Jung},
  journal = {Nano Letters},
  year = {2025},
  url = {https://doi.org/10.1021/acs.nanolett.5c01307},
  doi = {10.1021/acs.nanolett.5c01307}
}
Advanced Materials, 37, 2501021 (2025)2025

Selective Electrosynthesis of Methanol from CO2 over Cu/Cu2P2O7 via the Formate Pathway

H. Kim, J. Lee†, S. Lee, S. Park, Y. Lee, G. Lee, H. S. Jeon, M. H. Han, S. Jin, H.-W. Lee, A. Soon, J. Kim*, J. Ryu

IF 26.8JCR Top 2.17%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 10/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/461 journals · Top 2.17%
  • CHEMISTRY, MULTIDISCIPLINARY6/239 journals · Top 2.51%
  • CHEMISTRY, PHYSICAL5/185 journals · Top 2.70%
  • NANOSCIENCE & NANOTECHNOLOGY4/147 journals · Top 2.72%
  • PHYSICS, APPLIED6/187 journals · Top 3.21%
  • PHYSICS, CONDENSED MATTER3/80 journals · Top 3.75%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H. Kim, J. Lee†, S. Lee, S. Park, Y. Lee, G. Lee, H. S. Jeon, M. H. Han, S. Jin, H.-W. Lee, A. Soon, J. Kim*, J. Ryu. Selective Electrosynthesis of Methanol from CO2 over Cu/Cu2P2O7 via the Formate Pathway. Advanced Materials, 37, 2501021 (2025).

@article{esrl2025paper26,
  title = {Selective Electrosynthesis of Methanol from CO2 over Cu/Cu2P2O7 via the Formate Pathway},
  author = {H. Kim and J. Lee and S. Lee and S. Park and Y. Lee and G. Lee and H. S. Jeon and M. H. Han and S. Jin and H.-W. Lee and A. Soon and J. Kim and J. Ryu},
  journal = {Advanced Materials},
  year = {2025},
  url = {https://doi.org/10.1002/adma.202501021},
  doi = {10.1002/adma.202501021}
}
Materials Science and Engineering: R: Reports, 164, 100970 (2025)2025

Stable Performance for Pouch-Type All-Solid-State Batteries enabled by Current Collector with Optimized Primer Layer

H. Oh, J. T. Kim, H.-J. Shin, A-Y. Kim, C. Bak, S.-O. Kim, K. Y. Chung, J. Mun, J. Kim, Y. M. Lee, S.-Y. Lee, H.-G. Jung

Solid-state
IF 26.8JCR Top 2.20%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · Published Top %

  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 2.20%

2024 JIF · public JCR list · JCR Top % · KIST research announcement

Citation & BibTeX · 인용 정보

H. Oh, J. T. Kim, H.-J. Shin, A-Y. Kim, C. Bak, S.-O. Kim, K. Y. Chung, J. Mun, J. Kim, Y. M. Lee, S.-Y. Lee, H.-G. Jung. Stable Performance for Pouch-Type All-Solid-State Batteries enabled by Current Collector with Optimized Primer Layer. Materials Science and Engineering: R: Reports, 164, 100970 (2025).

@article{esrl2025paper27,
  title = {Stable Performance for Pouch-Type All-Solid-State Batteries enabled by Current Collector with Optimized Primer Layer},
  author = {H. Oh and J. T. Kim and H.-J. Shin and A-Y. Kim and C. Bak and S.-O. Kim and K. Y. Chung and J. Mun and J. Kim and Y. M. Lee and S.-Y. Lee and H.-G. Jung},
  journal = {Materials Science and Engineering: R: Reports},
  year = {2025},
  url = {https://doi.org/10.1016/j.mser.2025.100970},
  doi = {10.1016/j.mser.2025.100970}
}
Advanced Functional Materials, 35, 2424880 (2025)2025

Improving Cyclability and Structural Stability of Co-Free Layered Cathode by Controlling Porosity and Cracks in Secondary Particles for Low-Cost and High-Energy LIBs

M. Choi†, H.-B. Lee, Y. Lee, H. Kweon, J. Ahn, B. Ku, J. Lee, S. Lee, J. Park, Y.-M. Kim, J. Kim*

Lithium / Li
IF 19.0JCR Top 4.81%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 9/187 journals

  • PHYSICS, APPLIED9/187 journals · Top 4.81%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY23/461 journals · Top 4.99%
  • CHEMISTRY, MULTIDISCIPLINARY13/239 journals · Top 5.44%
  • NANOSCIENCE & NANOTECHNOLOGY9/147 journals · Top 6.12%
  • PHYSICS, CONDENSED MATTER5/80 journals · Top 6.25%
  • CHEMISTRY, PHYSICAL12/185 journals · Top 6.49%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

M. Choi†, H.-B. Lee, Y. Lee, H. Kweon, J. Ahn, B. Ku, J. Lee, S. Lee, J. Park, Y.-M. Kim, J. Kim*. Improving Cyclability and Structural Stability of Co-Free Layered Cathode by Controlling Porosity and Cracks in Secondary Particles for Low-Cost and High-Energy LIBs. Advanced Functional Materials, 35, 2424880 (2025).

@article{esrl2025paper28,
  title = {Improving Cyclability and Structural Stability of Co-Free Layered Cathode by Controlling Porosity and Cracks in Secondary Particles for Low-Cost and High-Energy LIBs},
  author = {M. Choi and H.-B. Lee and Y. Lee and H. Kweon and J. Ahn and B. Ku and J. Lee and S. Lee and J. Park and Y.-M. Kim and J. Kim},
  journal = {Advanced Functional Materials},
  year = {2025},
  url = {https://doi.org/10.1002/adfm.202424880},
  doi = {10.1002/adfm.202424880}
}
Journal of Materials Chemistry A, 13, 8466-8473 (2025)2025

Enhancing Redox Stability of Lithium-Oxygen Batteries via Introducing Oxygen Pre-coordinated Vanadyl Phthalocyanine Catalyst

B. Kim, H. Kweon†, Y. Lim, H. Park, J. Kim*, W.-H. Ryu

Lithium / Li
IF 9.5JCR Top 13.67%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 63/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY63/461 journals · Top 13.67%
  • ENERGY & FUELS29/182 journals · Top 15.93%
  • CHEMISTRY, PHYSICAL33/185 journals · Top 17.84%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

B. Kim, H. Kweon†, Y. Lim, H. Park, J. Kim*, W.-H. Ryu. Enhancing Redox Stability of Lithium-Oxygen Batteries via Introducing Oxygen Pre-coordinated Vanadyl Phthalocyanine Catalyst. Journal of Materials Chemistry A, 13, 8466-8473 (2025).

@article{esrl2025paper29,
  title = {Enhancing Redox Stability of Lithium-Oxygen Batteries via Introducing Oxygen Pre-coordinated Vanadyl Phthalocyanine Catalyst},
  author = {B. Kim and H. Kweon and Y. Lim and H. Park and J. Kim and W.-H. Ryu},
  journal = {Journal of Materials Chemistry A},
  year = {2025},
  url = {https://doi.org/10.1039/d4ta07071b},
  doi = {10.1039/d4ta07071b}
}
Advanced Energy Materials, 15, 2404193 (2025)2025

Reduction-Induced Oxygen Loss: The Hidden Surface Reconstruction Mechanism of Layered Oxide Cathodes in Lithium-Ion Batteries

S. Jeon, G. Lim, H. Lee, H. Park, M. K. Cho, C. Kim, Y. Lee, J. Kim, M. Kwon, J.-K. Yoo, H. Jeong, J. Kim, S.-H. Yu, M. Lee, J. Kim*, J. Hong

Lithium / LiInterfaces
IF 26.0JCR Top 2.60%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/461 journals · Top 2.60%
  • ENERGY & FUELS5/182 journals · Top 2.75%
  • CHEMISTRY, PHYSICAL6/185 journals · Top 3.24%
  • PHYSICS, APPLIED8/187 journals · Top 4.28%
  • PHYSICS, CONDENSED MATTER4/80 journals · Top 5.00%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S. Jeon, G. Lim, H. Lee, H. Park, M. K. Cho, C. Kim, Y. Lee, J. Kim, M. Kwon, J.-K. Yoo, H. Jeong, J. Kim, S.-H. Yu, M. Lee, J. Kim*, J. Hong. Reduction-Induced Oxygen Loss: The Hidden Surface Reconstruction Mechanism of Layered Oxide Cathodes in Lithium-Ion Batteries. Advanced Energy Materials, 15, 2404193 (2025).

@article{esrl2025paper30,
  title = {Reduction-Induced Oxygen Loss: The Hidden Surface Reconstruction Mechanism of Layered Oxide Cathodes in Lithium-Ion Batteries},
  author = {S. Jeon and G. Lim and H. Lee and H. Park and M. K. Cho and C. Kim and Y. Lee and J. Kim and M. Kwon and J.-K. Yoo and H. Jeong and J. Kim and S.-H. Yu and M. Lee and J. Kim and J. Hong},
  journal = {Advanced Energy Materials},
  year = {2025},
  url = {https://doi.org/10.1002/aenm.202404193},
  doi = {10.1002/aenm.202404193}
}
Energy Storage Materials, 74, 103930 (2025)2025

Enhancing Structural Flexibility in P2-type Ni-Mn-based Na-layered Cathodes for High Power-Capability and Fast Charging/Discharging Performance

B. Ku†, J. Ahn†, H. Lee, H. Ahn, J. Lee, H. Kweon, M. Choi, H.-G. Jung, K. Ihm, E. Sim, J.-K. Yoo, J. Kim*

Sodium / Na
IF 20.2JCR Top 4.77%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 22/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY22/461 journals · Top 4.77%
  • CHEMISTRY, PHYSICAL10/185 journals · Top 5.41%
  • NANOSCIENCE & NANOTECHNOLOGY8/147 journals · Top 5.44%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

B. Ku†, J. Ahn†, H. Lee, H. Ahn, J. Lee, H. Kweon, M. Choi, H.-G. Jung, K. Ihm, E. Sim, J.-K. Yoo, J. Kim*. Enhancing Structural Flexibility in P2-type Ni-Mn-based Na-layered Cathodes for High Power-Capability and Fast Charging/Discharging Performance. Energy Storage Materials, 74, 103930 (2025).

@article{esrl2025paper31,
  title = {Enhancing Structural Flexibility in P2-type Ni-Mn-based Na-layered Cathodes for High Power-Capability and Fast Charging/Discharging Performance},
  author = {B. Ku and J. Ahn and H. Lee and H. Ahn and J. Lee and H. Kweon and M. Choi and H.-G. Jung and K. Ihm and E. Sim and J.-K. Yoo and J. Kim},
  journal = {Energy Storage Materials},
  year = {2025},
  url = {https://doi.org/10.1016/j.ensm.2024.103930},
  doi = {10.1016/j.ensm.2024.103930}
}
Journal of Power Sources, 628, 235786 (2025)2025

Relaxation of the Jahn–Teller stress effect in the P3-type K0. 5MnO2 cathode by copper and magnesium co-substitution for high-performance K-ion batteries

Y. Oh, H. Lee†, G. Oh, S. Ryu, U.-H. Kim, H.-G. Jung, J. Kim*, J.-Y. Hwang

Potassium
IF 7.9JCR Top 15.91%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ELECTROCHEMISTRY · 7/44 journals

  • ELECTROCHEMISTRY7/44 journals · Top 15.91%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY88/461 journals · Top 19.09%
  • ENERGY & FUELS41/182 journals · Top 22.53%
  • CHEMISTRY, PHYSICAL43/185 journals · Top 23.24%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y. Oh, H. Lee†, G. Oh, S. Ryu, U.-H. Kim, H.-G. Jung, J. Kim*, J.-Y. Hwang. Relaxation of the Jahn–Teller stress effect in the P3-type K0. 5MnO2 cathode by copper and magnesium co-substitution for high-performance K-ion batteries. Journal of Power Sources, 628, 235786 (2025).

@article{esrl2025paper32,
  title = {Relaxation of the Jahn–Teller stress effect in the P3-type K0. 5MnO2 cathode by copper and magnesium co-substitution for high-performance K-ion batteries},
  author = {Y. Oh and H. Lee and G. Oh and S. Ryu and U.-H. Kim and H.-G. Jung and J. Kim and J.-Y. Hwang},
  journal = {Journal of Power Sources},
  year = {2025},
  url = {https://doi.org/10.1016/j.jpowsour.2024.235786},
  doi = {10.1016/j.jpowsour.2024.235786}
}
Advanced Energy Materials, 15, 2403247 (2025)2025

2D Graphene‐Like Carbon Coated Solid Electrolyte for Reducing Inhomogeneous Reactions of All‐Solid‐State Batteries

H.-J. Shin, J.-T. Kim, D. Han, H.-S. Kim, K. Y. Chung, J. Mun, J. Kim, K.-W. Nam, H.-G. Jung

Solid-state
IF 26.0JCR Top 2.60%2024 metricsDetails · 지표 정보

논문 게재연도(2025)의 전년도인 2024년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/461 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/461 journals · Top 2.60%
  • ENERGY & FUELS5/182 journals · Top 2.75%
  • CHEMISTRY, PHYSICAL6/185 journals · Top 3.24%
  • PHYSICS, APPLIED8/187 journals · Top 4.28%
  • PHYSICS, CONDENSED MATTER4/80 journals · Top 5.00%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H.-J. Shin, J.-T. Kim, D. Han, H.-S. Kim, K. Y. Chung, J. Mun, J. Kim, K.-W. Nam, H.-G. Jung. 2D Graphene‐Like Carbon Coated Solid Electrolyte for Reducing Inhomogeneous Reactions of All‐Solid‐State Batteries. Advanced Energy Materials, 15, 2403247 (2025).

@article{esrl2025paper33,
  title = {2D Graphene‐Like Carbon Coated Solid Electrolyte for Reducing Inhomogeneous Reactions of All‐Solid‐State Batteries},
  author = {H.-J. Shin and J.-T. Kim and D. Han and H.-S. Kim and K. Y. Chung and J. Mun and J. Kim and K.-W. Nam and H.-G. Jung},
  journal = {Advanced Energy Materials},
  year = {2025},
  url = {https://doi.org/10.1002/aenm.202403247},
  doi = {10.1002/aenm.202403247}
}
Advanced Functional Materials, 34, 2410866 (2024)2024

A Fluorine‐Free Binder with Organic–Inorganic Crosslinked Networks Enabling Structural Stability of Ni‐Rich Layered Cathodes in Lithium‐Ion Batteries

J. Jang, J. Ahn, J. Ahn†, U. T. Jung, J. Yoon, M. J. Kang, M.-k. Cho, D. J. Kang, J.Kim*, J.-K. Yoo, H.-G. Im

Lithium / Li
IF 18.5JCR Top 4.33%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 10/231 journals

  • CHEMISTRY, MULTIDISCIPLINARY10/231 journals · Top 4.33%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY21/439 journals · Top 4.78%
  • PHYSICS, APPLIED9/179 journals · Top 5.03%
  • CHEMISTRY, PHYSICAL11/178 journals · Top 6.18%
  • PHYSICS, CONDENSED MATTER5/79 journals · Top 6.33%
  • NANOSCIENCE & NANOTECHNOLOGY9/141 journals · Top 6.38%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Jang, J. Ahn, J. Ahn†, U. T. Jung, J. Yoon, M. J. Kang, M.-k. Cho, D. J. Kang, J.Kim*, J.-K. Yoo, H.-G. Im. A Fluorine‐Free Binder with Organic–Inorganic Crosslinked Networks Enabling Structural Stability of Ni‐Rich Layered Cathodes in Lithium‐Ion Batteries. Advanced Functional Materials, 34, 2410866 (2024).

@article{esrl2024paper34,
  title = {A Fluorine‐Free Binder with Organic–Inorganic Crosslinked Networks Enabling Structural Stability of Ni‐Rich Layered Cathodes in Lithium‐Ion Batteries},
  author = {J. Jang and J. Ahn and J. Ahn and U. T. Jung and J. Yoon and M. J. Kang and M.-k. Cho and D. J. Kang and J.Kim and J.-K. Yoo and H.-G. Im},
  journal = {Advanced Functional Materials},
  year = {2024},
  url = {https://doi.org/10.1002/adfm.202410866},
  doi = {10.1002/adfm.202410866}
}
Advanced Energy Materials, 14, 2402412 (2024)2024

Enhanced Fast‐Discharging Performance and Cyclability in Oxygen‐Redox‐Based P3‐Type Na‐Layered Cathode via Vacancies in TM layers

S.Y.Lee†, H.Kweon†, S.Lee, M.Cho, H.Ahn, J.Ahn, B.Ku, M.Choi, H.Jung, D.Shin, J.Kim*

Sodium / NaOxygen redox
IF 24.4JCR Top 2.92%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 5/171 journals

  • ENERGY & FUELS5/171 journals · Top 2.92%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY13/439 journals · Top 2.96%
  • CHEMISTRY, PHYSICAL6/178 journals · Top 3.37%
  • PHYSICS, APPLIED8/179 journals · Top 4.47%
  • PHYSICS, CONDENSED MATTER4/79 journals · Top 5.06%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S.Y.Lee†, H.Kweon†, S.Lee, M.Cho, H.Ahn, J.Ahn, B.Ku, M.Choi, H.Jung, D.Shin, J.Kim*. Enhanced Fast‐Discharging Performance and Cyclability in Oxygen‐Redox‐Based P3‐Type Na‐Layered Cathode via Vacancies in TM layers. Advanced Energy Materials, 14, 2402412 (2024).

@article{esrl2024paper35,
  title = {Enhanced Fast‐Discharging Performance and Cyclability in Oxygen‐Redox‐Based P3‐Type Na‐Layered Cathode via Vacancies in TM layers},
  author = {S.Y.Lee and H.Kweon and S.Lee and M.Cho and H.Ahn and J.Ahn and B.Ku and M.Choi and H.Jung and D.Shin and J.Kim},
  journal = {Advanced Energy Materials},
  year = {2024},
  url = {https://doi.org/10.1002/aenm.202402412},
  doi = {10.1002/aenm.202402412}
}
Chemical Engineering Journal, 495, 153122 (2024)2024

Activation of Oxygen Redox by Inhibited Dynamic Phase Transition for High-Energy Li-Rich Layered Oxide Cathode

J. Kim†, H. Ahn†, H. Ahn, H. Park, J. Hong, M. H. Lee, H. Park, J. Kim*

Lithium / LiOxygen redox
IF 13.4JCR Top 3.70%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, ENVIRONMENTAL · 3/81 journals

  • ENGINEERING, ENVIRONMENTAL3/81 journals · Top 3.70%
  • ENGINEERING, CHEMICAL7/170 journals · Top 4.12%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Kim†, H. Ahn†, H. Ahn, H. Park, J. Hong, M. H. Lee, H. Park, J. Kim*. Activation of Oxygen Redox by Inhibited Dynamic Phase Transition for High-Energy Li-Rich Layered Oxide Cathode. Chemical Engineering Journal, 495, 153122 (2024).

@article{esrl2024paper36,
  title = {Activation of Oxygen Redox by Inhibited Dynamic Phase Transition for High-Energy Li-Rich Layered Oxide Cathode},
  author = {J. Kim and H. Ahn and H. Ahn and H. Park and J. Hong and M. H. Lee and H. Park and J. Kim},
  journal = {Chemical Engineering Journal},
  year = {2024},
  url = {https://www.sciencedirect.com/science/article/pii/S1385894724046102}
}
ACS Energy Letters, 9, 2222−2230 (2024)2024

Extending the electrochemical window of Na+ halide nanocomposite solid electrolytes for 5 V-class all-solid-state Na-ion batteries

J. Park, D. Han, J. P. Son, H. Kwak, W. Ko, C. Park, C. Lee, H.-W. Lee, J. Kim, K.-W. Nam, Y. S. Jung

Sodium / NaSolid-state
IF 19.5JCR Top 3.87%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/439 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/439 journals · Top 3.87%
  • ENERGY & FUELS7/171 journals · Top 4.09%
  • NANOSCIENCE & NANOTECHNOLOGY6/141 journals · Top 4.26%
  • CHEMISTRY, PHYSICAL8/178 journals · Top 4.49%
  • ELECTROCHEMISTRY3/45 journals · Top 6.67%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Park, D. Han, J. P. Son, H. Kwak, W. Ko, C. Park, C. Lee, H.-W. Lee, J. Kim, K.-W. Nam, Y. S. Jung. Extending the electrochemical window of Na+ halide nanocomposite solid electrolytes for 5 V-class all-solid-state Na-ion batteries. ACS Energy Letters, 9, 2222−2230 (2024).

@article{esrl2024paper37,
  title = {Extending the electrochemical window of Na+ halide nanocomposite solid electrolytes for 5 V-class all-solid-state Na-ion batteries},
  author = {J. Park and D. Han and J. P. Son and H. Kwak and W. Ko and C. Park and C. Lee and H.-W. Lee and J. Kim and K.-W. Nam and Y. S. Jung},
  journal = {ACS Energy Letters},
  year = {2024},
  url = {https://doi.org/10.1021/acsenergylett.4c00490},
  doi = {10.1021/acsenergylett.4c00490}
}
Energy Storage Materials, 67, 103291 (2024)2024

Stabilized High-Voltage Operation of Co-Free NMX Cathode via CEI-Controlling

M. Choi†, H. Choi, S. Park, W. M. Seong, Y. Lee, W. Ko, M.-k. Cho, J. Ahn, Y. Kong, J. Kim*

IF 18.9JCR Top 4.33%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 19/439 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY19/439 journals · Top 4.33%
  • CHEMISTRY, PHYSICAL10/178 journals · Top 5.62%
  • NANOSCIENCE & NANOTECHNOLOGY8/141 journals · Top 5.67%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

M. Choi†, H. Choi, S. Park, W. M. Seong, Y. Lee, W. Ko, M.-k. Cho, J. Ahn, Y. Kong, J. Kim*. Stabilized High-Voltage Operation of Co-Free NMX Cathode via CEI-Controlling. Energy Storage Materials, 67, 103291 (2024).

@article{esrl2024paper38,
  title = {Stabilized High-Voltage Operation of Co-Free NMX Cathode via CEI-Controlling},
  author = {M. Choi and H. Choi and S. Park and W. M. Seong and Y. Lee and W. Ko and M.-k. Cho and J. Ahn and Y. Kong and J. Kim},
  journal = {Energy Storage Materials},
  year = {2024},
  url = {https://doi.org/10.1016/j.ensm.2024.103291},
  doi = {10.1016/j.ensm.2024.103291}
}
Carbon Energy, 6, e587 (2024)2024

Unraveling reaction discrepancy and electrolyte stabilizing effects of auto-oxygenated porphyrin catalysts in lithium–oxygen and lithium–air cells

B. Kim, H. Park†, H.-S. Kim, J. S. Lee, J. Kim*, W.-H. Ryu

Lithium / Li
IF 19.5JCR Top 3.80%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · Published Top %

  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 3.80%

IF · ACS Energy Letters 2024 editorial · JCR Top % · journal host university, 2023 record · Category ranks · Chinese university journal society

Citation & BibTeX · 인용 정보

B. Kim, H. Park†, H.-S. Kim, J. S. Lee, J. Kim*, W.-H. Ryu. Unraveling reaction discrepancy and electrolyte stabilizing effects of auto-oxygenated porphyrin catalysts in lithium–oxygen and lithium–air cells. Carbon Energy, 6, e587 (2024).

@article{esrl2024paper39,
  title = {Unraveling reaction discrepancy and electrolyte stabilizing effects of auto-oxygenated porphyrin catalysts in lithium–oxygen and lithium–air cells},
  author = {B. Kim and H. Park and H.-S. Kim and J. S. Lee and J. Kim and W.-H. Ryu},
  journal = {Carbon Energy},
  year = {2024},
  url = {https://doi.org/10.1002/cey2.587},
  doi = {10.1002/cey2.587}
}
Carbon Energy, 6, e549 (2024)2024

In situ techniques for Li-rechargeable battery analysis

S. Lee, S. Park, J. Seok, J. U. Kim, J. Kim*, W.-S. Yoon

Lithium / Li
IF 19.5JCR Top 3.80%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · Published Top %

  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 3.80%

IF · ACS Energy Letters 2024 editorial · JCR Top % · journal host university, 2023 record · Category ranks · Chinese university journal society

Citation & BibTeX · 인용 정보

S. Lee, S. Park, J. Seok, J. U. Kim, J. Kim*, W.-S. Yoon. In situ techniques for Li-rechargeable battery analysis. Carbon Energy, 6, e549 (2024).

@article{esrl2024paper40,
  title = {In situ techniques for Li-rechargeable battery analysis},
  author = {S. Lee and S. Park and J. Seok and J. U. Kim and J. Kim and W.-S. Yoon},
  journal = {Carbon Energy},
  year = {2024},
  url = {https://doi.org/10.1002/cey2.549},
  doi = {10.1002/cey2.549}
}
Carbon Energy, 6, e472 (2024)2024

Heterostructured Ni–Co Metal Alloy and Metal Oxide Nanoparticles as a Polysulfide Mediator for Stable Lithium–Sulfur Full Batteries with Lean Electrolyte

H. Park, S. Lee, H. Kim, H. Kim, M. H. Alfaruqi, G. Alfaza, J. Kim, H. Park, J. Kim*, M. Agostini, Y.-K. Sun, J.-Y. Hwang

Lithium / Li
IF 19.5JCR Top 3.80%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · Published Top %

  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 3.80%

IF · ACS Energy Letters 2024 editorial · JCR Top % · journal host university, 2023 record · Category ranks · Chinese university journal society

Citation & BibTeX · 인용 정보

H. Park, S. Lee, H. Kim, H. Kim, M. H. Alfaruqi, G. Alfaza, J. Kim, H. Park, J. Kim*, M. Agostini, Y.-K. Sun, J.-Y. Hwang. Heterostructured Ni–Co Metal Alloy and Metal Oxide Nanoparticles as a Polysulfide Mediator for Stable Lithium–Sulfur Full Batteries with Lean Electrolyte. Carbon Energy, 6, e472 (2024).

@article{esrl2024paper41,
  title = {Heterostructured Ni–Co Metal Alloy and Metal Oxide Nanoparticles as a Polysulfide Mediator for Stable Lithium–Sulfur Full Batteries with Lean Electrolyte},
  author = {H. Park and S. Lee and H. Kim and H. Kim and M. H. Alfaruqi and G. Alfaza and J. Kim and H. Park and J. Kim and M. Agostini and Y.-K. Sun and J.-Y. Hwang},
  journal = {Carbon Energy},
  year = {2024},
  url = {https://doi.org/10.1002/cey2.472},
  doi = {10.1002/cey2.472}
}
Carbon Energy, 6, e454 (2024)2024

Structural and electrochemical stabilization enabling high-energy P3-type Cr-based layered oxide cathode for K-ion batteries

W. Ko†, S. Lee, H. Park, J. Kang, J. Ahn, Y. Lee, G. Oh, J-K. Yoo, J-Y. Hwang, J. Kim*

Potassium
IF 19.5JCR Top 3.80%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · Published Top %

  • MATERIALS SCIENCE, MULTIDISCIPLINARYPublished Top % · Top 3.80%

IF · ACS Energy Letters 2024 editorial · JCR Top % · journal host university, 2023 record · Category ranks · Chinese university journal society

Citation & BibTeX · 인용 정보

W. Ko†, S. Lee, H. Park, J. Kang, J. Ahn, Y. Lee, G. Oh, J-K. Yoo, J-Y. Hwang, J. Kim*. Structural and electrochemical stabilization enabling high-energy P3-type Cr-based layered oxide cathode for K-ion batteries. Carbon Energy, 6, e454 (2024).

@article{esrl2024paper42,
  title = {Structural and electrochemical stabilization enabling high-energy P3-type Cr-based layered oxide cathode for K-ion batteries},
  author = {W. Ko and S. Lee and H. Park and J. Kang and J. Ahn and Y. Lee and G. Oh and J-K. Yoo and J-Y. Hwang and J. Kim},
  journal = {Carbon Energy},
  year = {2024},
  url = {https://doi.org/10.1002/cey2.454},
  doi = {10.1002/cey2.454}
}
Journal of Materials Chemistry A, 12, 7122-7131 (2024)2024

One-dimensional van der Waals transition metal chalcogenide as an anode material for advanced lithium-ion batteries

W. Choi, S. Oh, S. Hwang, S. Chae, H. Park, W. Lee, C. Woo, X. Dong, K. H. Choi, J. Ahn, Y. Kim, X. Zhang, J. Kang, H.-S. Bang, J. Jeon, H.-S. Oh, J. Kim, J.-Y. Choi, W.-S. Yoon

Lithium / Li
IF 10.8JCR Top 9.36%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 16/171 journals

  • ENERGY & FUELS16/171 journals · Top 9.36%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY46/439 journals · Top 10.48%
  • CHEMISTRY, PHYSICAL24/178 journals · Top 13.48%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. Choi, S. Oh, S. Hwang, S. Chae, H. Park, W. Lee, C. Woo, X. Dong, K. H. Choi, J. Ahn, Y. Kim, X. Zhang, J. Kang, H.-S. Bang, J. Jeon, H.-S. Oh, J. Kim, J.-Y. Choi, W.-S. Yoon. One-dimensional van der Waals transition metal chalcogenide as an anode material for advanced lithium-ion batteries. Journal of Materials Chemistry A, 12, 7122-7131 (2024).

@article{esrl2024paper43,
  title = {One-dimensional van der Waals transition metal chalcogenide as an anode material for advanced lithium-ion batteries},
  author = {W. Choi and S. Oh and S. Hwang and S. Chae and H. Park and W. Lee and C. Woo and X. Dong and K. H. Choi and J. Ahn and Y. Kim and X. Zhang and J. Kang and H.-S. Bang and J. Jeon and H.-S. Oh and J. Kim and J.-Y. Choi and W.-S. Yoon},
  journal = {Journal of Materials Chemistry A},
  year = {2024},
  url = {https://doi.org/10.1039/d3ta06867f},
  doi = {10.1039/d3ta06867f}
}
Advanced Functional Materials, 34, 2312401 (2024)2024

Stabilization of Oxygen-Dependent Fe3+/4+ Redox in Li-Excess DRX Cathode Exhibiting Anionic Redox via Transition Metal Combination

H. Lee, M. Kim, H. Park, Y. Yoo, S. Na, H.-D. Lim, J. Kim, W.-S. Yoon

Lithium / LiOxygen redox
IF 18.5JCR Top 4.33%2023 metricsDetails · 지표 정보

논문 게재연도(2024)의 전년도인 2023년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 10/231 journals

  • CHEMISTRY, MULTIDISCIPLINARY10/231 journals · Top 4.33%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY21/439 journals · Top 4.78%
  • PHYSICS, APPLIED9/179 journals · Top 5.03%
  • CHEMISTRY, PHYSICAL11/178 journals · Top 6.18%
  • PHYSICS, CONDENSED MATTER5/79 journals · Top 6.33%
  • NANOSCIENCE & NANOTECHNOLOGY9/141 journals · Top 6.38%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H. Lee, M. Kim, H. Park, Y. Yoo, S. Na, H.-D. Lim, J. Kim, W.-S. Yoon. Stabilization of Oxygen-Dependent Fe3+/4+ Redox in Li-Excess DRX Cathode Exhibiting Anionic Redox via Transition Metal Combination. Advanced Functional Materials, 34, 2312401 (2024).

@article{esrl2024paper44,
  title = {Stabilization of Oxygen-Dependent Fe3+/4+ Redox in Li-Excess DRX Cathode Exhibiting Anionic Redox via Transition Metal Combination},
  author = {H. Lee and M. Kim and H. Park and Y. Yoo and S. Na and H.-D. Lim and J. Kim and W.-S. Yoon},
  journal = {Advanced Functional Materials},
  year = {2024},
  url = {https://doi.org/10.1002/adfm.202312401},
  doi = {10.1002/adfm.202312401}
}
Energy Storage Materials, 63, 103048 (2023)2023

Chiolite Na5Ti3F14: A Novel Sodium Titanium Fluoride Anode for Low-cost and High-performance Na-ion batteries

J. Kang†, J. Ahn, Y. Lee, H. Park, W. Ko, B. Ku, M. Choi, H. Jung, W. Ryu, J. Kim*

Sodium / Na
IF 20.4JCR Top 4.36%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/344 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/344 journals · Top 4.36%
  • CHEMISTRY, PHYSICAL9/161 journals · Top 5.59%
  • NANOSCIENCE & NANOTECHNOLOGY7/108 journals · Top 6.48%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Kang†, J. Ahn, Y. Lee, H. Park, W. Ko, B. Ku, M. Choi, H. Jung, W. Ryu, J. Kim*. Chiolite Na5Ti3F14: A Novel Sodium Titanium Fluoride Anode for Low-cost and High-performance Na-ion batteries. Energy Storage Materials, 63, 103048 (2023).

@article{esrl2023paper45,
  title = {Chiolite Na5Ti3F14: A Novel Sodium Titanium Fluoride Anode for Low-cost and High-performance Na-ion batteries},
  author = {J. Kang and J. Ahn and Y. Lee and H. Park and W. Ko and B. Ku and M. Choi and H. Jung and W. Ryu and J. Kim},
  journal = {Energy Storage Materials},
  year = {2023},
  url = {https://doi.org/10.1016/j.ensm.2023.103048},
  doi = {10.1016/j.ensm.2023.103048}
}
Energy Storage Materials, 62, 102952 (2023)2023

Stable High-voltage Operation of Oxygen Redox in P2-type Na-layered Oxide Cathode at Fast Discharging Via Enhanced Kinetics

B. Ku†, H. Ahn†, S. Lee, J. Ahn, M. Choi, J. Kang, H. Park, J. Kim, A.-Y. Kim, H.-G. Jung, J.-K. Yoo, J. Kim*

Sodium / NaOxygen redox
IF 20.4JCR Top 4.36%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/344 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/344 journals · Top 4.36%
  • CHEMISTRY, PHYSICAL9/161 journals · Top 5.59%
  • NANOSCIENCE & NANOTECHNOLOGY7/108 journals · Top 6.48%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

B. Ku†, H. Ahn†, S. Lee, J. Ahn, M. Choi, J. Kang, H. Park, J. Kim, A.-Y. Kim, H.-G. Jung, J.-K. Yoo, J. Kim*. Stable High-voltage Operation of Oxygen Redox in P2-type Na-layered Oxide Cathode at Fast Discharging Via Enhanced Kinetics. Energy Storage Materials, 62, 102952 (2023).

@article{esrl2023paper46,
  title = {Stable High-voltage Operation of Oxygen Redox in P2-type Na-layered Oxide Cathode at Fast Discharging Via Enhanced Kinetics},
  author = {B. Ku and H. Ahn and S. Lee and J. Ahn and M. Choi and J. Kang and H. Park and J. Kim and A.-Y. Kim and H.-G. Jung and J.-K. Yoo and J. Kim},
  journal = {Energy Storage Materials},
  year = {2023},
  url = {https://doi.org/10.1016/j.ensm.2023.102952},
  doi = {10.1016/j.ensm.2023.102952}
}
Journal of Materials Chemistry A, 11, 20549–20558 (2023)2023

Agyrodite sulfide coated NCM cathode for the improved interfacial contact in normal-pressure operational all-solid-state batteries

J. T. Kim, H.-J. Shin, A.-Y. Kim, H.-S. Oh, H. Kim, S. Yu, H. Kim, K. Y. Chung, J. Kim, Y.-K. Sun, H.-G. Jung

Solid-stateInterfaces
IF 11.9JCR Top 9.24%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 11/119 journals

  • ENERGY & FUELS11/119 journals · Top 9.24%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY32/344 journals · Top 9.30%
  • CHEMISTRY, PHYSICAL24/161 journals · Top 14.91%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. T. Kim, H.-J. Shin, A.-Y. Kim, H.-S. Oh, H. Kim, S. Yu, H. Kim, K. Y. Chung, J. Kim, Y.-K. Sun, H.-G. Jung. Agyrodite sulfide coated NCM cathode for the improved interfacial contact in normal-pressure operational all-solid-state batteries. Journal of Materials Chemistry A, 11, 20549–20558 (2023).

@article{esrl2023paper47,
  title = {Agyrodite sulfide coated NCM cathode for the improved interfacial contact in normal-pressure operational all-solid-state batteries},
  author = {J. T. Kim and H.-J. Shin and A.-Y. Kim and H.-S. Oh and H. Kim and S. Yu and H. Kim and K. Y. Chung and J. Kim and Y.-K. Sun and H.-G. Jung},
  journal = {Journal of Materials Chemistry A},
  year = {2023},
  url = {https://doi.org/10.1039/d3ta03283c},
  doi = {10.1039/d3ta03283c}
}
Composites Part B: Engineering, 264, 110886 (2023)2023

Polyoxometalate derived hierarchically structured N,P-Codoped reduced graphene oxide/MoO2 composites for high performance lithium–sulfur batteries

W. I. Kim, J. S. Yeon, H. Park, H. J. Kim, M. J. Kim, J. Kim, H. S. Park

Lithium / Li
IF 13.1JCR Top 1.11%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, MULTIDISCIPLINARY · 1/90 journals

  • ENGINEERING, MULTIDISCIPLINARY1/90 journals · Top 1.11%
  • MATERIALS SCIENCE, COMPOSITES2/28 journals · Top 7.14%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. I. Kim, J. S. Yeon, H. Park, H. J. Kim, M. J. Kim, J. Kim, H. S. Park. Polyoxometalate derived hierarchically structured N,P-Codoped reduced graphene oxide/MoO2 composites for high performance lithium–sulfur batteries. Composites Part B: Engineering, 264, 110886 (2023).

@article{esrl2023paper48,
  title = {Polyoxometalate derived hierarchically structured N,P-Codoped reduced graphene oxide/MoO2 composites for high performance lithium–sulfur batteries},
  author = {W. I. Kim and J. S. Yeon and H. Park and H. J. Kim and M. J. Kim and J. Kim and H. S. Park},
  journal = {Composites Part B: Engineering},
  year = {2023},
  url = {https://doi.org/10.1016/j.compositesb.2023.110886},
  doi = {10.1016/j.compositesb.2023.110886}
}
Materials Today Energy, 36, 101356 (2023)2023

Development of P3-type K0.70[Cr0.86Sb0.14]O2 Cathode for High-Performance K-Ion Batteries

W. Ko†, J. Kim†, J. Kang, H. Park, Y. Lee, J. Ahn, B. Ku, M. Choi, H. Ahn, G. Oh, J-Y. Hwang, J. Kim*

Potassium
IF 9.3JCR Top 16.81%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 20/119 journals

  • ENERGY & FUELS20/119 journals · Top 16.81%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY58/344 journals · Top 16.86%
  • CHEMISTRY, PHYSICAL35/161 journals · Top 21.74%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. Ko†, J. Kim†, J. Kang, H. Park, Y. Lee, J. Ahn, B. Ku, M. Choi, H. Ahn, G. Oh, J-Y. Hwang, J. Kim*. Development of P3-type K0.70[Cr0.86Sb0.14]O2 Cathode for High-Performance K-Ion Batteries. Materials Today Energy, 36, 101356 (2023).

@article{esrl2023paper49,
  title = {Development of P3-type K0.70[Cr0.86Sb0.14]O2 Cathode for High-Performance K-Ion Batteries},
  author = {W. Ko and J. Kim and J. Kang and H. Park and Y. Lee and J. Ahn and B. Ku and M. Choi and H. Ahn and G. Oh and J-Y. Hwang and J. Kim},
  journal = {Materials Today Energy},
  year = {2023},
  url = {https://doi.org/10.1016/j.mtener.2023.101356},
  doi = {10.1016/j.mtener.2023.101356}
}

[Invited paper featured in themed collections: Energy Science & Technology at Sungkyunkwan University]

Cellulose, 30, 7177-7191 (2023)2023

One-dimensional nanostructured vanadium oxides with single-crystalline structure synthesized by cellulose nanocrystal-template-assisted hydrothermal method for Li-ion battery cathodes

C.Youn, W. Ko†, A. Jo, J. Lee, S. Yeo, Y. Seo, J. Lee, B-S. Lee, J. Kim*, T. Choi

Lithium / Li
IF 5.7JCR Top 4.76%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, PAPER & WOOD · 1/21 journals

  • MATERIALS SCIENCE, PAPER & WOOD1/21 journals · Top 4.76%
  • MATERIALS SCIENCE, TEXTILES2/26 journals · Top 7.69%
  • POLYMER SCIENCE10/86 journals · Top 11.63%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

C.Youn, W. Ko†, A. Jo, J. Lee, S. Yeo, Y. Seo, J. Lee, B-S. Lee, J. Kim*, T. Choi. One-dimensional nanostructured vanadium oxides with single-crystalline structure synthesized by cellulose nanocrystal-template-assisted hydrothermal method for Li-ion battery cathodes. Cellulose, 30, 7177-7191 (2023).

@article{esrl2023paper50,
  title = {One-dimensional nanostructured vanadium oxides with single-crystalline structure synthesized by cellulose nanocrystal-template-assisted hydrothermal method for Li-ion battery cathodes},
  author = {C.Youn and W. Ko and A. Jo and J. Lee and S. Yeo and Y. Seo and J. Lee and B-S. Lee and J. Kim and T. Choi},
  journal = {Cellulose},
  year = {2023},
  url = {https://doi.org/10.1007/s10570-023-05325-2},
  doi = {10.1007/s10570-023-05325-2}
}
Journal of Energy Chemistry, 85, 144-153 (2023)2023

Unexpected Li Displacement and Suppressed Phase Transition Enabling Highly Stabilized Oxygen Redox in P3-type Na layered oxide cathode

M. Choi†, H. Ahn†, H. Park, Y. Lee, J. Ahn, B. Ku, J. Kim, W.Ko, J. Kang, J-K. Yoo, D. Kim, J. Kim*

Lithium / LiSodium / NaOxygen redox
IF 13.1JCR Top 2.74%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, APPLIED · 2/73 journals

  • CHEMISTRY, APPLIED2/73 journals · Top 2.74%
  • ENGINEERING, CHEMICAL7/142 journals · Top 4.93%
  • ENERGY & FUELS10/119 journals · Top 8.40%
  • CHEMISTRY, PHYSICAL21/161 journals · Top 13.04%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

M. Choi†, H. Ahn†, H. Park, Y. Lee, J. Ahn, B. Ku, J. Kim, W.Ko, J. Kang, J-K. Yoo, D. Kim, J. Kim*. Unexpected Li Displacement and Suppressed Phase Transition Enabling Highly Stabilized Oxygen Redox in P3-type Na layered oxide cathode. Journal of Energy Chemistry, 85, 144-153 (2023).

@article{esrl2023paper51,
  title = {Unexpected Li Displacement and Suppressed Phase Transition Enabling Highly Stabilized Oxygen Redox in P3-type Na layered oxide cathode},
  author = {M. Choi and H. Ahn and H. Park and Y. Lee and J. Ahn and B. Ku and J. Kim and W.Ko and J. Kang and J-K. Yoo and D. Kim and J. Kim},
  journal = {Journal of Energy Chemistry},
  year = {2023},
  url = {https://doi.org/10.1016/j.jechem.2023.06.009},
  doi = {10.1016/j.jechem.2023.06.009}
}
Journal of Energy Chemistry, 84, 153–161 (2023)2023

Occurrence of Anionic Redox with Absence of Full Oxidation to Ru5+ in High-energy P2-type layered Oxide Cathode

J.Ahn, H. Park, W. Ko, Y. Lee, J. Kang, S. Lee, S. Lee, E. Sim, K. Ihm, J. Hong, J-K. Yoo, K. Ku, J. Kim*

Oxygen redox
IF 13.1JCR Top 2.74%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, APPLIED · 2/73 journals

  • CHEMISTRY, APPLIED2/73 journals · Top 2.74%
  • ENGINEERING, CHEMICAL7/142 journals · Top 4.93%
  • ENERGY & FUELS10/119 journals · Top 8.40%
  • CHEMISTRY, PHYSICAL21/161 journals · Top 13.04%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J.Ahn, H. Park, W. Ko, Y. Lee, J. Kang, S. Lee, S. Lee, E. Sim, K. Ihm, J. Hong, J-K. Yoo, K. Ku, J. Kim*. Occurrence of Anionic Redox with Absence of Full Oxidation to Ru5+ in High-energy P2-type layered Oxide Cathode. Journal of Energy Chemistry, 84, 153–161 (2023).

@article{esrl2023paper52,
  title = {Occurrence of Anionic Redox with Absence of Full Oxidation to Ru5+ in High-energy P2-type layered Oxide Cathode},
  author = {J.Ahn and H. Park and W. Ko and Y. Lee and J. Kang and S. Lee and S. Lee and E. Sim and K. Ihm and J. Hong and J-K. Yoo and K. Ku and J. Kim},
  journal = {Journal of Energy Chemistry},
  year = {2023},
  url = {https://doi.org/10.1016/j.jechem.2023.05.016},
  doi = {10.1016/j.jechem.2023.05.016}
}
Materials Today Energy, 35, 101325 (2023)2023

Enhanced Conversion Reaction of Na-Cu-PO3 via Amorpholization and Carbon-coating for Large Na storage

Y. Lee, J. Kang, J. Ahn, W. Ko, H. Park, J-K. Yoo, W-S. Yoon, J. Kim*

Sodium / NaInterfaces
IF 9.3JCR Top 16.81%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 20/119 journals

  • ENERGY & FUELS20/119 journals · Top 16.81%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY58/344 journals · Top 16.86%
  • CHEMISTRY, PHYSICAL35/161 journals · Top 21.74%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y. Lee, J. Kang, J. Ahn, W. Ko, H. Park, J-K. Yoo, W-S. Yoon, J. Kim*. Enhanced Conversion Reaction of Na-Cu-PO3 via Amorpholization and Carbon-coating for Large Na storage. Materials Today Energy, 35, 101325 (2023).

@article{esrl2023paper53,
  title = {Enhanced Conversion Reaction of Na-Cu-PO3 via Amorpholization and Carbon-coating for Large Na storage},
  author = {Y. Lee and J. Kang and J. Ahn and W. Ko and H. Park and J-K. Yoo and W-S. Yoon and J. Kim},
  journal = {Materials Today Energy},
  year = {2023},
  url = {https://doi.org/10.1016/j.mtener.2023.101325},
  doi = {10.1016/j.mtener.2023.101325}
}

[Invited paper featured in themed collections: Energy Science & Technology at Sungkyunkwan University]

Advanced Energy Materials, 13, 2204353 (2023)2023

Multifunctional Polymeric Phthalocyanine‐Coated Carbon Nanotubes for Efficient Redox Mediators of Lithium–Sulfur Batteries

Y. Kim, W. Kim, H. Park, J. Kim, H. Cho, J. Yeon, J. Kim, Y. Kim, J. Lee, H. S. Park

Lithium / Li
IF 27.8JCR Top 2.62%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 9/344 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY9/344 journals · Top 2.62%
  • CHEMISTRY, PHYSICAL5/161 journals · Top 3.11%
  • PHYSICS, APPLIED6/160 journals · Top 3.75%
  • ENERGY & FUELS5/119 journals · Top 4.20%
  • PHYSICS, CONDENSED MATTER4/67 journals · Top 5.97%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y. Kim, W. Kim, H. Park, J. Kim, H. Cho, J. Yeon, J. Kim, Y. Kim, J. Lee, H. S. Park. Multifunctional Polymeric Phthalocyanine‐Coated Carbon Nanotubes for Efficient Redox Mediators of Lithium–Sulfur Batteries. Advanced Energy Materials, 13, 2204353 (2023).

@article{esrl2023paper54,
  title = {Multifunctional Polymeric Phthalocyanine‐Coated Carbon Nanotubes for Efficient Redox Mediators of Lithium–Sulfur Batteries},
  author = {Y. Kim and W. Kim and H. Park and J. Kim and H. Cho and J. Yeon and J. Kim and Y. Kim and J. Lee and H. S. Park},
  journal = {Advanced Energy Materials},
  year = {2023},
  url = {https://doi.org/10.1002/aenm.202204353},
  doi = {10.1002/aenm.202204353}
}
Batteries & Supercaps, 6, e220200486 (2023)2023

Review on cathode materials for sodium‐and potassium ion batteries: structural design with electrochemical properties

H. Park, Y. Lee, W. Ko, M. Choi, B. Ku, H. Ahn, J. Kim, J. Kang, J.-K. Yoo, J. Kim*

Sodium / NaPotassium
IF 5.7JCR Top 28.78%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 99/344 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY99/344 journals · Top 28.78%
  • ELECTROCHEMISTRY9/30 journals · Top 30.00%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H. Park, Y. Lee, W. Ko, M. Choi, B. Ku, H. Ahn, J. Kim, J. Kang, J.-K. Yoo, J. Kim*. Review on cathode materials for sodium‐and potassium ion batteries: structural design with electrochemical properties. Batteries & Supercaps, 6, e220200486 (2023).

@article{esrl2023paper55,
  title = {Review on cathode materials for sodium‐and potassium ion batteries: structural design with electrochemical properties},
  author = {H. Park and Y. Lee and W. Ko and M. Choi and B. Ku and H. Ahn and J. Kim and J. Kang and J.-K. Yoo and J. Kim},
  journal = {Batteries \& Supercaps},
  year = {2023},
  url = {https://doi.org/10.1002/batt.202200486},
  doi = {10.1002/batt.202200486}
}

[Invited Review]

Energy Storage Materials, 56, 13-24 (2023)2023

Caffeine as an Energy Storage Material for Next-Generation Lithium Batteries

W. Lee, Y. Lee, H. Park, M. Choi, S. Kong, J.W. Yang, J. Kim, W.-S. Yoon

Lithium / Li
IF 20.4JCR Top 4.36%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/344 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/344 journals · Top 4.36%
  • CHEMISTRY, PHYSICAL9/161 journals · Top 5.59%
  • NANOSCIENCE & NANOTECHNOLOGY7/108 journals · Top 6.48%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. Lee, Y. Lee, H. Park, M. Choi, S. Kong, J.W. Yang, J. Kim, W.-S. Yoon. Caffeine as an Energy Storage Material for Next-Generation Lithium Batteries. Energy Storage Materials, 56, 13-24 (2023).

@article{esrl2023paper56,
  title = {Caffeine as an Energy Storage Material for Next-Generation Lithium Batteries},
  author = {W. Lee and Y. Lee and H. Park and M. Choi and S. Kong and J.W. Yang and J. Kim and W.-S. Yoon},
  journal = {Energy Storage Materials},
  year = {2023},
  url = {https://doi.org/10.1016/j.ensm.2023.01.003},
  doi = {10.1016/j.ensm.2023.01.003}
}
Chemical Engineering Journal, 451, 138883 (2023)2023

Gradational Anionic Redox Enabling High-energy P2-type Na-layered Oxide Cathode

S. Lee†, W. Ko†, H. Park, Y. Lee, J. Kang, J. Ahn, S. Lee, E. Sim, K. Lim, K.-Y. Park, J. Kim*

Sodium / NaOxygen redox
IF 15.1JCR Top 3.52%2022 metricsDetails · 지표 정보

논문 게재연도(2023)의 전년도인 2022년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, CHEMICAL · 5/142 journals

  • ENGINEERING, CHEMICAL5/142 journals · Top 3.52%
  • ENGINEERING, ENVIRONMENTAL3/55 journals · Top 5.45%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S. Lee†, W. Ko†, H. Park, Y. Lee, J. Kang, J. Ahn, S. Lee, E. Sim, K. Lim, K.-Y. Park, J. Kim*. Gradational Anionic Redox Enabling High-energy P2-type Na-layered Oxide Cathode. Chemical Engineering Journal, 451, 138883 (2023).

@article{esrl2023paper57,
  title = {Gradational Anionic Redox Enabling High-energy P2-type Na-layered Oxide Cathode},
  author = {S. Lee and W. Ko and H. Park and Y. Lee and J. Kang and J. Ahn and S. Lee and E. Sim and K. Lim and K.-Y. Park and J. Kim},
  journal = {Chemical Engineering Journal},
  year = {2023},
  url = {https://doi.org/10.1016/j.cej.2022.138883},
  doi = {10.1016/j.cej.2022.138883}
}
Applied Physics Reviews, 9, 041405 (2022)2022

High-energy P2-type Na-layered oxide cathode with sequentially occurred anionic redox and suppressed phase transition

S. Lee†, J. Kang†, M. Cho, H. Park, W. Ko, Y. Lee, J. Ahn, S. Lee, E. Sim, K. Ihm, J. Hong, H. Kim and J. Kim*

Sodium / NaOxygen redox
IF 19.5JCR Top 5.59%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 9/161 journals

  • PHYSICS, APPLIED9/161 journals · Top 5.59%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S. Lee†, J. Kang†, M. Cho, H. Park, W. Ko, Y. Lee, J. Ahn, S. Lee, E. Sim, K. Ihm, J. Hong, H. Kim and J. Kim*. High-energy P2-type Na-layered oxide cathode with sequentially occurred anionic redox and suppressed phase transition. Applied Physics Reviews, 9, 041405 (2022).

@article{esrl2022paper58,
  title = {High-energy P2-type Na-layered oxide cathode with sequentially occurred anionic redox and suppressed phase transition},
  author = {S. Lee and J. Kang and M. Cho and H. Park and W. Ko and Y. Lee and J. Ahn and S. Lee and E. Sim and K. Ihm and J. Hong and H. Kim and J. Kim},
  journal = {Applied Physics Reviews},
  year = {2022},
  url = {https://doi.org/10.1063/5.0100108},
  doi = {10.1063/5.0100108}
}

[Scilight: "Improving stability in Na-ion batteries through vacancy substitution, doping", 2022]

ACS Energy Letters, 7, 3293–3301 (2022)2022

NaAlCl4: New Halide Solid Electrolyte for 3 V Stable Cost-Effective All-Solid-State Na-ion Batteries

J. Park, J. Son, W. Ko, J.-S. Kim, Y. Choi, H. Kwak, H. Kim, D.-H. Seo, J. Kim, Y. S. Jung

Sodium / NaSolid-state
IF 24.0JCR Top 3.48%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/345 journals · Top 3.48%
  • NANOSCIENCE & NANOTECHNOLOGY4/109 journals · Top 3.67%
  • CHEMISTRY, PHYSICAL7/165 journals · Top 4.24%
  • ENERGY & FUELS6/119 journals · Top 5.04%
  • ELECTROCHEMISTRY2/30 journals · Top 6.67%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Park, J. Son, W. Ko, J.-S. Kim, Y. Choi, H. Kwak, H. Kim, D.-H. Seo, J. Kim, Y. S. Jung. NaAlCl4: New Halide Solid Electrolyte for 3 V Stable Cost-Effective All-Solid-State Na-ion Batteries. ACS Energy Letters, 7, 3293–3301 (2022).

@article{esrl2022paper59,
  title = {NaAlCl4: New Halide Solid Electrolyte for 3 V Stable Cost-Effective All-Solid-State Na-ion Batteries},
  author = {J. Park and J. Son and W. Ko and J.-S. Kim and Y. Choi and H. Kwak and H. Kim and D.-H. Seo and J. Kim and Y. S. Jung},
  journal = {ACS Energy Letters},
  year = {2022},
  url = {https://doi.org/10.1021/acsenergylett.2c01514},
  doi = {10.1021/acsenergylett.2c01514}
}
Advanced Functional Materials, 32, 2207094 (2022)2022

Crystallinity Regulated Functional Separator Based on Bimetallic NixFey Alloy Nanoparticles for Facilitated Redox Kinetics of Lithium–Sulfur Batteries

Q. Liu, X. Han, Z. Zheng, P. Xiong, R.-G. Jeong, G. Kim, H. Park, J. Kim*, B.-K. Kim, H. S. Park

Lithium / Li
IF 19.9JCR Top 4.93%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/345 journals · Top 4.93%
  • PHYSICS, APPLIED8/161 journals · Top 4.97%
  • CHEMISTRY, MULTIDISCIPLINARY10/179 journals · Top 5.59%
  • CHEMISTRY, PHYSICAL10/165 journals · Top 6.06%
  • NANOSCIENCE & NANOTECHNOLOGY8/109 journals · Top 7.34%
  • PHYSICS, CONDENSED MATTER6/69 journals · Top 8.70%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Q. Liu, X. Han, Z. Zheng, P. Xiong, R.-G. Jeong, G. Kim, H. Park, J. Kim*, B.-K. Kim, H. S. Park. Crystallinity Regulated Functional Separator Based on Bimetallic NixFey Alloy Nanoparticles for Facilitated Redox Kinetics of Lithium–Sulfur Batteries. Advanced Functional Materials, 32, 2207094 (2022).

@article{esrl2022paper60,
  title = {Crystallinity Regulated Functional Separator Based on Bimetallic NixFey Alloy Nanoparticles for Facilitated Redox Kinetics of Lithium–Sulfur Batteries},
  author = {Q. Liu and X. Han and Z. Zheng and P. Xiong and R.-G. Jeong and G. Kim and H. Park and J. Kim and B.-K. Kim and H. S. Park},
  journal = {Advanced Functional Materials},
  year = {2022},
  url = {https://doi.org/10.1002/adfm.202207094},
  doi = {10.1002/adfm.202207094}
}
Chemical Engineering Journal, 448, 137685 (2022)2022

Rational design of Li off-stoichiometric Ni-rich Layered Cathode Materials for Li-ion Batteries

S.H. Song, S. Hong, M. Cho, J.-G. Yoo, H. M. Jin, S.-H. Lee, M. Avddv, K. Ikeda, J. Kim, S. C. Nam, S.-Ho, Yu, I. Park, H. Kim

Lithium / Li
IF 16.7JCR Top 2.80%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, CHEMICAL · 4/143 journals

  • ENGINEERING, CHEMICAL4/143 journals · Top 2.80%
  • ENGINEERING, ENVIRONMENTAL2/54 journals · Top 3.70%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S.H. Song, S. Hong, M. Cho, J.-G. Yoo, H. M. Jin, S.-H. Lee, M. Avddv, K. Ikeda, J. Kim, S. C. Nam, S.-Ho, Yu, I. Park, H. Kim. Rational design of Li off-stoichiometric Ni-rich Layered Cathode Materials for Li-ion Batteries. Chemical Engineering Journal, 448, 137685 (2022).

@article{esrl2022paper61,
  title = {Rational design of Li off-stoichiometric Ni-rich Layered Cathode Materials for Li-ion Batteries},
  author = {S.H. Song and S. Hong and M. Cho and J.-G. Yoo and H. M. Jin and S.-H. Lee and M. Avddv and K. Ikeda and J. Kim and S. C. Nam and S.-Ho and Yu and I. Park and H. Kim},
  journal = {Chemical Engineering Journal},
  year = {2022},
  url = {https://doi.org/10.1016/j.cej.2022.137685},
  doi = {10.1016/j.cej.2022.137685}
}
Advanced Functional Materials, 32, 2204354 (2022)2022

Li-rich Mn-Mg layered oxide as a novel Ni-/Co-free cathode

Y. Lee†, H. Park†, M.-K. Cho, J. Ahn, W. Ko, J. Kang, Y. Choi, H. Kim, I. Park, W.-H. Ryu, J. Hong, J. Kim*

Lithium / Li
IF 19.9JCR Top 4.93%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/345 journals · Top 4.93%
  • PHYSICS, APPLIED8/161 journals · Top 4.97%
  • CHEMISTRY, MULTIDISCIPLINARY10/179 journals · Top 5.59%
  • CHEMISTRY, PHYSICAL10/165 journals · Top 6.06%
  • NANOSCIENCE & NANOTECHNOLOGY8/109 journals · Top 7.34%
  • PHYSICS, CONDENSED MATTER6/69 journals · Top 8.70%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y. Lee†, H. Park†, M.-K. Cho, J. Ahn, W. Ko, J. Kang, Y. Choi, H. Kim, I. Park, W.-H. Ryu, J. Hong, J. Kim*. Li-rich Mn-Mg layered oxide as a novel Ni-/Co-free cathode. Advanced Functional Materials, 32, 2204354 (2022).

@article{esrl2022paper62,
  title = {Li-rich Mn-Mg layered oxide as a novel Ni-/Co-free cathode},
  author = {Y. Lee and H. Park and M.-K. Cho and J. Ahn and W. Ko and J. Kang and Y. Choi and H. Kim and I. Park and W.-H. Ryu and J. Hong and J. Kim},
  journal = {Advanced Functional Materials},
  year = {2022},
  url = {https://doi.org/10.1002/adfm.202204354},
  doi = {10.1002/adfm.202204354}
}
Journal of Materials Chemistry A, 10, 20080–20089 (2022)2022

High-energy Conversion-type Cathode Activated by Amorpholization for Li Rechargeable Batteries

Y. Lee, J. Kang, J. Ahn, W. Ko, H. Park, S. Lee, S. Lee, J.-K. Yoo, J. Kim*

Lithium / Li
IF 14.5JCR Top 7.54%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 26/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY26/345 journals · Top 7.54%
  • ENERGY & FUELS9/119 journals · Top 7.56%
  • CHEMISTRY, PHYSICAL18/165 journals · Top 10.91%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y. Lee, J. Kang, J. Ahn, W. Ko, H. Park, S. Lee, S. Lee, J.-K. Yoo, J. Kim*. High-energy Conversion-type Cathode Activated by Amorpholization for Li Rechargeable Batteries. Journal of Materials Chemistry A, 10, 20080–20089 (2022).

@article{esrl2022paper63,
  title = {High-energy Conversion-type Cathode Activated by Amorpholization for Li Rechargeable Batteries},
  author = {Y. Lee and J. Kang and J. Ahn and W. Ko and H. Park and S. Lee and S. Lee and J.-K. Yoo and J. Kim},
  journal = {Journal of Materials Chemistry A},
  year = {2022},
  url = {https://doi.org/10.1039/d2ta02167f},
  doi = {10.1039/d2ta02167f}
}

[Invited paper featured in themed collections: Journal of Materials Chemistry A Emerging Investigators 2022]

Advanced Functional Materials, 32, 2201816 (2022)2022

Highly stable Fe2+/Ti3+-based Fluoride Cathode Enabling Low-cost and High-performance Na-ion Batteries

J. Kang†, J. Ahn†, H. Park, W. Ko, Y. Lee, S. Lee, S. Lee, S.-K. Jung J. Kim*

Sodium / Na
IF 19.9JCR Top 4.93%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/345 journals · Top 4.93%
  • PHYSICS, APPLIED8/161 journals · Top 4.97%
  • CHEMISTRY, MULTIDISCIPLINARY10/179 journals · Top 5.59%
  • CHEMISTRY, PHYSICAL10/165 journals · Top 6.06%
  • NANOSCIENCE & NANOTECHNOLOGY8/109 journals · Top 7.34%
  • PHYSICS, CONDENSED MATTER6/69 journals · Top 8.70%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Kang†, J. Ahn†, H. Park, W. Ko, Y. Lee, S. Lee, S. Lee, S.-K. Jung J. Kim*. Highly stable Fe2+/Ti3+-based Fluoride Cathode Enabling Low-cost and High-performance Na-ion Batteries. Advanced Functional Materials, 32, 2201816 (2022).

@article{esrl2022paper64,
  title = {Highly stable Fe2+/Ti3+-based Fluoride Cathode Enabling Low-cost and High-performance Na-ion Batteries},
  author = {J. Kang and J. Ahn and H. Park and W. Ko and Y. Lee and S. Lee and S. Lee and S.-K. Jung J. Kim},
  journal = {Advanced Functional Materials},
  year = {2022},
  url = {https://doi.org/10.1002/adfm.202201816},
  doi = {10.1002/adfm.202201816}
}
Energy Storage Materials, 49, 58-66 (2022)2022

A Novel Organosilicon-type Binder for LiCoO2 cathode in Li-ion Batteries

J. Ahn, H.-G. Im, Y. Lee†, D. Lee, H. Jang, Y. Oh, K. Chung, T. Park, M.-K. Um, J. W. Yi, J. Kim*, D. J. Kang, J.-K. Yoo

Lithium / Li
IF 20.8JCR Top 4.35%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/345 journals · Top 4.35%
  • CHEMISTRY, PHYSICAL9/165 journals · Top 5.45%
  • NANOSCIENCE & NANOTECHNOLOGY7/109 journals · Top 6.42%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Ahn, H.-G. Im, Y. Lee†, D. Lee, H. Jang, Y. Oh, K. Chung, T. Park, M.-K. Um, J. W. Yi, J. Kim*, D. J. Kang, J.-K. Yoo. A Novel Organosilicon-type Binder for LiCoO2 cathode in Li-ion Batteries. Energy Storage Materials, 49, 58-66 (2022).

@article{esrl2022paper65,
  title = {A Novel Organosilicon-type Binder for LiCoO2 cathode in Li-ion Batteries},
  author = {J. Ahn and H.-G. Im and Y. Lee and D. Lee and H. Jang and Y. Oh and K. Chung and T. Park and M.-K. Um and J. W. Yi and J. Kim and D. J. Kang and J.-K. Yoo},
  journal = {Energy Storage Materials},
  year = {2022},
  url = {https://doi.org/10.1016/j.ensm.2022.04.005},
  doi = {10.1016/j.ensm.2022.04.005}
}
Energy Storage Materials, 46, 289-299 (2022)2022

Exceptionally Increased Reversible Capacity of O3-type NaCrO2 Cathode by Preventing Irreversible Phase Transition

W. Ko, M.-K Cho, J. Kang, H. Park, J. Ahn, Y. Lee, S. Lee, S. Lee, K. Heo, J. Hong, J.-K. Yoo, J. Kim*

Sodium / Na
IF 20.8JCR Top 4.35%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/345 journals · Top 4.35%
  • CHEMISTRY, PHYSICAL9/165 journals · Top 5.45%
  • NANOSCIENCE & NANOTECHNOLOGY7/109 journals · Top 6.42%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. Ko, M.-K Cho, J. Kang, H. Park, J. Ahn, Y. Lee, S. Lee, S. Lee, K. Heo, J. Hong, J.-K. Yoo, J. Kim*. Exceptionally Increased Reversible Capacity of O3-type NaCrO2 Cathode by Preventing Irreversible Phase Transition. Energy Storage Materials, 46, 289-299 (2022).

@article{esrl2022paper66,
  title = {Exceptionally Increased Reversible Capacity of O3-type NaCrO2 Cathode by Preventing Irreversible Phase Transition},
  author = {W. Ko and M.-K Cho and J. Kang and H. Park and J. Ahn and Y. Lee and S. Lee and S. Lee and K. Heo and J. Hong and J.-K. Yoo and J. Kim},
  journal = {Energy Storage Materials},
  year = {2022},
  url = {https://doi.org/10.1016/j.ensm.2022.01.023},
  doi = {10.1016/j.ensm.2022.01.023}
}
Advanced Energy Materials, 12, 2103527 (2022)2022

Auto-Oxygenated Porphyrin-derived Redox Mediators for High-Performance Lithium Air-Breathing Batteries

H.-S. Kim, B. Kim, H. Park, J. Kim*, W.-H. Ryu

Lithium / Li
IF 29.7JCR Top 2.61%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 9/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY9/345 journals · Top 2.61%
  • CHEMISTRY, PHYSICAL5/165 journals · Top 3.03%
  • PHYSICS, APPLIED6/161 journals · Top 3.73%
  • ENERGY & FUELS5/119 journals · Top 4.20%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H.-S. Kim, B. Kim, H. Park, J. Kim*, W.-H. Ryu. Auto-Oxygenated Porphyrin-derived Redox Mediators for High-Performance Lithium Air-Breathing Batteries. Advanced Energy Materials, 12, 2103527 (2022).

@article{esrl2022paper67,
  title = {Auto-Oxygenated Porphyrin-derived Redox Mediators for High-Performance Lithium Air-Breathing Batteries},
  author = {H.-S. Kim and B. Kim and H. Park and J. Kim and W.-H. Ryu},
  journal = {Advanced Energy Materials},
  year = {2022},
  url = {https://doi.org/10.1002/aenm.202103527},
  doi = {10.1002/aenm.202103527}
}
Ceramist, 25, 76-89 (2022)2022

Recent Progress of Cathode Materials for Na-ion batteries

W. Ko, B. Ku, H. Park, J. Kang, J. Kim*

Sodium / Na
Citation & BibTeX · 인용 정보

W. Ko, B. Ku, H. Park, J. Kang, J. Kim*. Recent Progress of Cathode Materials for Na-ion batteries. Ceramist, 25, 76-89 (2022).

@article{esrl2022paper68,
  title = {Recent Progress of Cathode Materials for Na-ion batteries},
  author = {W. Ko and B. Ku and H. Park and J. Kang and J. Kim},
  journal = {Ceramist},
  year = {2022},
  url = {https://doi.org/10.31613/ceramist.2022.25.1.04},
  doi = {10.31613/ceramist.2022.25.1.04}
}
Advanced Functional Materials, 32, 2108790 (2021)2022

Unveiling the role of transition-metal ion in the thermal degradation of layered Ni–Co–Mn cathodes for lithium rechargeable batteries

S.-K. Jung, H. Kim, S. H. Song, S. Lee, J. Kim, K. Kang

Lithium / Li
IF 19.9JCR Top 4.93%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/345 journals · Top 4.93%
  • PHYSICS, APPLIED8/161 journals · Top 4.97%
  • CHEMISTRY, MULTIDISCIPLINARY10/179 journals · Top 5.59%
  • CHEMISTRY, PHYSICAL10/165 journals · Top 6.06%
  • NANOSCIENCE & NANOTECHNOLOGY8/109 journals · Top 7.34%
  • PHYSICS, CONDENSED MATTER6/69 journals · Top 8.70%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S.-K. Jung, H. Kim, S. H. Song, S. Lee, J. Kim, K. Kang. Unveiling the role of transition-metal ion in the thermal degradation of layered Ni–Co–Mn cathodes for lithium rechargeable batteries. Advanced Functional Materials, 32, 2108790 (2021).

@article{esrl2022paper69,
  title = {Unveiling the role of transition-metal ion in the thermal degradation of layered Ni–Co–Mn cathodes for lithium rechargeable batteries},
  author = {S.-K. Jung and H. Kim and S. H. Song and S. Lee and J. Kim and K. Kang},
  journal = {Advanced Functional Materials},
  year = {2022},
  url = {https://doi.org/10.1002/adfm.202108790},
  doi = {10.1002/adfm.202108790}
}
Energy & Environmental Materials, 5, 555-564 (2022)2022

Multidimensional Hybrid Architecture Encapsulating Cobalt Oxide Nanoparticles into Carbon Nanotube Branched Nitrogen-Doped Reduced Graphene Oxide Networks for Lithium-Sulfur Batteries

J. S. Yeon, Y. H. Ko, T. H. Park, H. Park, J. Kim, H. S. Park

Lithium / Li
IF 13.4JCR Top 8.12%2021 metricsDetails · 지표 정보

논문 게재연도(2022)의 전년도인 2021년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 28/345 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY28/345 journals · Top 8.12%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. S. Yeon, Y. H. Ko, T. H. Park, H. Park, J. Kim, H. S. Park. Multidimensional Hybrid Architecture Encapsulating Cobalt Oxide Nanoparticles into Carbon Nanotube Branched Nitrogen-Doped Reduced Graphene Oxide Networks for Lithium-Sulfur Batteries. Energy & Environmental Materials, 5, 555-564 (2022).

@article{esrl2022paper70,
  title = {Multidimensional Hybrid Architecture Encapsulating Cobalt Oxide Nanoparticles into Carbon Nanotube Branched Nitrogen-Doped Reduced Graphene Oxide Networks for Lithium-Sulfur Batteries},
  author = {J. S. Yeon and Y. H. Ko and T. H. Park and H. Park and J. Kim and H. S. Park},
  journal = {Energy \& Environmental Materials},
  year = {2022},
  url = {https://doi.org/10.1002/eem2.12187},
  doi = {10.1002/eem2.12187}
}
Advanced Energy Materials, 11, 2102311 (2021)2021

Selective Anionic Redox and Suppressed Structural Disordering Enabling High-energy and Long-life Li-rich Layered-oxide cathode

J. Ahn†, J. Kang†, M.-K. Cho, H. Park, W. Ko, Y. Lee, H.-S. Kim, Y.H. Jung, T.-Y. Jeon, H. Kim, W.-H. Ryu, J. Hong, J. Kim*

Lithium / LiOxygen redox
IF 29.4JCR Top 2.99%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 10/334 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/334 journals · Top 2.99%
  • CHEMISTRY, PHYSICAL5/162 journals · Top 3.09%
  • PHYSICS, APPLIED6/160 journals · Top 3.75%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%
  • ENERGY & FUELS5/114 journals · Top 4.39%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Ahn†, J. Kang†, M.-K. Cho, H. Park, W. Ko, Y. Lee, H.-S. Kim, Y.H. Jung, T.-Y. Jeon, H. Kim, W.-H. Ryu, J. Hong, J. Kim*. Selective Anionic Redox and Suppressed Structural Disordering Enabling High-energy and Long-life Li-rich Layered-oxide cathode. Advanced Energy Materials, 11, 2102311 (2021).

@article{esrl2021paper71,
  title = {Selective Anionic Redox and Suppressed Structural Disordering Enabling High-energy and Long-life Li-rich Layered-oxide cathode},
  author = {J. Ahn and J. Kang and M.-K. Cho and H. Park and W. Ko and Y. Lee and H.-S. Kim and Y.H. Jung and T.-Y. Jeon and H. Kim and W.-H. Ryu and J. Hong and J. Kim},
  journal = {Advanced Energy Materials},
  year = {2021},
  url = {https://doi.org/10.1002/aenm.202102311},
  doi = {10.1002/aenm.202102311}
}
Journal of Power Sources, 510, 230409 (2021)2021

Triple perovskite structured Nd1.5Ba1.5CoFeMnO9-δ oxygen electrode materials for highly efficient and stable reversible protonic ceramic cells

J.-I. Lee, K.-Y. Park, H. Park, H. Bae, M. Saqib, K. Park, J.-S. Shin, M. Jo, J. Kim, S.-J. Song, E. D. Wachsman, J.-Y. Park

IF 9.1JCR Top 11.40%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 13/114 journals

  • ENERGY & FUELS13/114 journals · Top 11.40%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY45/334 journals · Top 13.47%
  • ELECTROCHEMISTRY4/29 journals · Top 13.79%
  • CHEMISTRY, PHYSICAL28/162 journals · Top 17.28%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J.-I. Lee, K.-Y. Park, H. Park, H. Bae, M. Saqib, K. Park, J.-S. Shin, M. Jo, J. Kim, S.-J. Song, E. D. Wachsman, J.-Y. Park. Triple perovskite structured Nd1.5Ba1.5CoFeMnO9-δ oxygen electrode materials for highly efficient and stable reversible protonic ceramic cells. Journal of Power Sources, 510, 230409 (2021).

@article{esrl2021paper72,
  title = {Triple perovskite structured Nd1.5Ba1.5CoFeMnO9-δ oxygen electrode materials for highly efficient and stable reversible protonic ceramic cells},
  author = {J.-I. Lee and K.-Y. Park and H. Park and H. Bae and M. Saqib and K. Park and J.-S. Shin and M. Jo and J. Kim and S.-J. Song and E. D. Wachsman and J.-Y. Park},
  journal = {Journal of Power Sources},
  year = {2021},
  url = {https://doi.org/10.1016/j.jpowsour.2021.230409},
  doi = {10.1016/j.jpowsour.2021.230409}
}
Journal of Material Chemistry A, 9, 11802-11811 (2021)2021

K1.5VOPO4F0.5: A Novel High-Power and High-Voltage Cathode for Rechargeable K-Ion Batteries

H. Park, W. Ko, Y. Lee, J. Kang, J. Ahn, J.-K. Yoo, J. Kim*,

Potassium
IF 12.7JCR Top 7.02%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 8/114 journals

  • ENERGY & FUELS8/114 journals · Top 7.02%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY29/334 journals · Top 8.68%
  • CHEMISTRY, PHYSICAL18/162 journals · Top 11.11%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H. Park, W. Ko, Y. Lee, J. Kang, J. Ahn, J.-K. Yoo, J. Kim*,. K1.5VOPO4F0.5: A Novel High-Power and High-Voltage Cathode for Rechargeable K-Ion Batteries. Journal of Material Chemistry A, 9, 11802-11811 (2021).

@article{esrl2021paper73,
  title = {K1.5VOPO4F0.5: A Novel High-Power and High-Voltage Cathode for Rechargeable K-Ion Batteries},
  author = {H. Park and W. Ko and Y. Lee and J. Kang and J. Ahn and J.-K. Yoo and J. Kim},
  journal = {Journal of Material Chemistry A},
  year = {2021},
  url = {https://doi.org/10.1039/d1ta02247d},
  doi = {10.1039/d1ta02247d}
}
Small, 17, 2100840 (2021)2021

Critical role of Ti4+ in stabilizing high-voltage redox reactions in Li-rich layered material

M. Cho, S.H. Song, S. Hong, K.S. Kim, M. Avdeev, J.-G. Yoo, K.-T. Ko, J. Hong, J. Kim*, S. Lee, H. Kim

Lithium / Li
IF 13.3JCR Top 6.88%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 11/160 journals

  • PHYSICS, APPLIED11/160 journals · Top 6.88%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY25/334 journals · Top 7.49%
  • CHEMISTRY, PHYSICAL14/162 journals · Top 8.64%
  • CHEMISTRY, MULTIDISCIPLINARY18/178 journals · Top 10.11%
  • PHYSICS, CONDENSED MATTER7/69 journals · Top 10.14%
  • NANOSCIENCE & NANOTECHNOLOGY13/106 journals · Top 12.26%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

M. Cho, S.H. Song, S. Hong, K.S. Kim, M. Avdeev, J.-G. Yoo, K.-T. Ko, J. Hong, J. Kim*, S. Lee, H. Kim. Critical role of Ti4+ in stabilizing high-voltage redox reactions in Li-rich layered material. Small, 17, 2100840 (2021).

@article{esrl2021paper74,
  title = {Critical role of Ti4+ in stabilizing high-voltage redox reactions in Li-rich layered material},
  author = {M. Cho and S.H. Song and S. Hong and K.S. Kim and M. Avdeev and J.-G. Yoo and K.-T. Ko and J. Hong and J. Kim and S. Lee and H. Kim},
  journal = {Small},
  year = {2021},
  url = {https://doi.org/10.1002/smll.202100840},
  doi = {10.1002/smll.202100840}
}
ACS Applied Materials & Interfaces, 13, 19970–19982 (2021)2021

Multifunctional Additives for High-Energy-Density Lithium-Ion Batteries: Improved Conductive Additive/Binder Networks and Enhanced Electrochemical Properties

J. Ahn, B. Park, J. Kim, M.-K. Um, J.W. Yi, J.-K. Yoo

Lithium / Li
IF 9.2JCR Top 13.17%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 44/334 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY44/334 journals · Top 13.17%
  • NANOSCIENCE & NANOTECHNOLOGY21/106 journals · Top 19.81%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Ahn, B. Park, J. Kim, M.-K. Um, J.W. Yi, J.-K. Yoo. Multifunctional Additives for High-Energy-Density Lithium-Ion Batteries: Improved Conductive Additive/Binder Networks and Enhanced Electrochemical Properties. ACS Applied Materials & Interfaces, 13, 19970–19982 (2021).

@article{esrl2021paper75,
  title = {Multifunctional Additives for High-Energy-Density Lithium-Ion Batteries: Improved Conductive Additive/Binder Networks and Enhanced Electrochemical Properties},
  author = {J. Ahn and B. Park and J. Kim and M.-K. Um and J.W. Yi and J.-K. Yoo},
  journal = {ACS Applied Materials \& Interfaces},
  year = {2021},
  url = {https://doi.org/10.1021/acsami.1c00848},
  doi = {10.1021/acsami.1c00848}
}
ACS Applied Materials & Interfaces, 13, 17978–17987 (2021)2021

Layered double hydroxide quantum dots for use in bifunctional separator of lithium sulfur batteries

Q. Liu, X. Han, H. Park, J. Kim, P. Xiong, H. Yuan, J.S. Yeon, Y. Kang, J.M. Park, Q. Dou, B.-K. Kim, H.S. Park

Lithium / Li
IF 9.2JCR Top 13.17%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 44/334 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY44/334 journals · Top 13.17%
  • NANOSCIENCE & NANOTECHNOLOGY21/106 journals · Top 19.81%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Q. Liu, X. Han, H. Park, J. Kim, P. Xiong, H. Yuan, J.S. Yeon, Y. Kang, J.M. Park, Q. Dou, B.-K. Kim, H.S. Park. Layered double hydroxide quantum dots for use in bifunctional separator of lithium sulfur batteries. ACS Applied Materials & Interfaces, 13, 17978–17987 (2021).

@article{esrl2021paper76,
  title = {Layered double hydroxide quantum dots for use in bifunctional separator of lithium sulfur batteries},
  author = {Q. Liu and X. Han and H. Park and J. Kim and P. Xiong and H. Yuan and J.S. Yeon and Y. Kang and J.M. Park and Q. Dou and B.-K. Kim and H.S. Park},
  journal = {ACS Applied Materials \& Interfaces},
  year = {2021},
  url = {https://doi.org/10.1021/acsami.1c00974},
  doi = {10.1021/acsami.1c00974}
}
Journal of Materials Chemistry A, 9, 9898–9908 (2021)2021

Low-cost and High-power K4[Mn2Fe](PO4)2(P2O7) as a novel cathode with outstanding cyclability for K-ion batteries

J. Kang†, H. Park†, W. Ko, Y. Lee, J. Ahn, J.-K. Yoo, S. Song, H. Kim, J. Kim*

Potassium
IF 12.7JCR Top 7.02%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 8/114 journals

  • ENERGY & FUELS8/114 journals · Top 7.02%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY29/334 journals · Top 8.68%
  • CHEMISTRY, PHYSICAL18/162 journals · Top 11.11%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Kang†, H. Park†, W. Ko, Y. Lee, J. Ahn, J.-K. Yoo, S. Song, H. Kim, J. Kim*. Low-cost and High-power K4[Mn2Fe](PO4)2(P2O7) as a novel cathode with outstanding cyclability for K-ion batteries. Journal of Materials Chemistry A, 9, 9898–9908 (2021).

@article{esrl2021paper77,
  title = {Low-cost and High-power K4[Mn2Fe](PO4)2(P2O7) as a novel cathode with outstanding cyclability for K-ion batteries},
  author = {J. Kang and H. Park and W. Ko and Y. Lee and J. Ahn and J.-K. Yoo and S. Song and H. Kim and J. Kim},
  journal = {Journal of Materials Chemistry A},
  year = {2021},
  url = {https://doi.org/10.1039/d1ta01602d},
  doi = {10.1039/d1ta01602d}
}
Energy & Environmental Science, 14, 1469-1479 (2021)2021

Na2Fe2F7: a fluoride-based cathode for high power and long life Na-ion batteries

H. Park†, Y. Lee†, M.-K. Cho, J. Kang, W. Ko, Y.H. Jung, T.-Y. Jeon, J. Hong, H. Kim, S.-T. Myung, J. Kim*

Sodium / Na
IF 38.5JCR Top 0.36%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENVIRONMENTAL SCIENCES · 1/274 journals

  • ENVIRONMENTAL SCIENCES1/274 journals · Top 0.36%
  • ENGINEERING, CHEMICAL1/143 journals · Top 0.70%
  • CHEMISTRY, MULTIDISCIPLINARY3/178 journals · Top 1.69%
  • ENERGY & FUELS3/114 journals · Top 2.63%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H. Park†, Y. Lee†, M.-K. Cho, J. Kang, W. Ko, Y.H. Jung, T.-Y. Jeon, J. Hong, H. Kim, S.-T. Myung, J. Kim*. Na2Fe2F7: a fluoride-based cathode for high power and long life Na-ion batteries. Energy & Environmental Science, 14, 1469-1479 (2021).

@article{esrl2021paper78,
  title = {Na2Fe2F7: a fluoride-based cathode for high power and long life Na-ion batteries},
  author = {H. Park and Y. Lee and M.-K. Cho and J. Kang and W. Ko and Y.H. Jung and T.-Y. Jeon and J. Hong and H. Kim and S.-T. Myung and J. Kim},
  journal = {Energy \& Environmental Science},
  year = {2021},
  url = {https://doi.org/10.1039/d0ee02803g},
  doi = {10.1039/d0ee02803g}
}
Journal of Materials Chemistry A, 9, 5475-5484 (2021)2021

An exceptionally large energy cathode with the K– SO4–Cu conversion reaction for potassium rechargeable batteries

Y. Lee, J.-K. Yoo, H. Park, W. Ko, J. Kang, J.H. Jo, G. Yoon, H.-G. Im, H. Yashiro, S.-T. Myung, J. Kim*

Potassium
IF 12.7JCR Top 7.02%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 8/114 journals

  • ENERGY & FUELS8/114 journals · Top 7.02%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY29/334 journals · Top 8.68%
  • CHEMISTRY, PHYSICAL18/162 journals · Top 11.11%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y. Lee, J.-K. Yoo, H. Park, W. Ko, J. Kang, J.H. Jo, G. Yoon, H.-G. Im, H. Yashiro, S.-T. Myung, J. Kim*. An exceptionally large energy cathode with the K– SO4–Cu conversion reaction for potassium rechargeable batteries. Journal of Materials Chemistry A, 9, 5475-5484 (2021).

@article{esrl2021paper79,
  title = {An exceptionally large energy cathode with the K– SO4–Cu conversion reaction for potassium rechargeable batteries},
  author = {Y. Lee and J.-K. Yoo and H. Park and W. Ko and J. Kang and J.H. Jo and G. Yoon and H.-G. Im and H. Yashiro and S.-T. Myung and J. Kim},
  journal = {Journal of Materials Chemistry A},
  year = {2021},
  url = {https://doi.org/10.1039/d0ta10234b},
  doi = {10.1039/d0ta10234b}
}
Chemical Engineering Journal, 409, 128226 (2021)2021

Multiple perovskite layered lanthanum nickelate Ruddlesden-Popper systems as highly active bifunctional oxygen catalysts

S.R. Choi, J.-I. Lee, H. Park, S.W. Lee, D.Y. Kim, W.Y. An, J.H. Kim, J. Kim, H.-S. Cho, J.-Y. Park

IF 13.3JCR Top 2.80%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, CHEMICAL · 4/143 journals

  • ENGINEERING, CHEMICAL4/143 journals · Top 2.80%
  • ENGINEERING, ENVIRONMENTAL2/54 journals · Top 3.70%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

S.R. Choi, J.-I. Lee, H. Park, S.W. Lee, D.Y. Kim, W.Y. An, J.H. Kim, J. Kim, H.-S. Cho, J.-Y. Park. Multiple perovskite layered lanthanum nickelate Ruddlesden-Popper systems as highly active bifunctional oxygen catalysts. Chemical Engineering Journal, 409, 128226 (2021).

@article{esrl2021paper80,
  title = {Multiple perovskite layered lanthanum nickelate Ruddlesden-Popper systems as highly active bifunctional oxygen catalysts},
  author = {S.R. Choi and J.-I. Lee and H. Park and S.W. Lee and D.Y. Kim and W.Y. An and J.H. Kim and J. Kim and H.-S. Cho and J.-Y. Park},
  journal = {Chemical Engineering Journal},
  year = {2021},
  url = {https://doi.org/10.1016/j.cej.2020.128226},
  doi = {10.1016/j.cej.2020.128226}
}
Journal of Materials Chemistry A, 9, 607-621, (2021)2021

Activity of layered swedenborgite structured Y0.8Er0.2BaCo3.2Ga0.8O7+δ for oxygen electrode reactions in at intermediate temperature reversible ceramic cells

J.-S. Shin, H. Park, K. Park, M. Saqib, M. Jo, J.H. Kim, H.-T. Lim, M. Kim, J. Kim, J.-Y. Park

IF 12.7JCR Top 7.02%2020 metricsDetails · 지표 정보

논문 게재연도(2021)의 전년도인 2020년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 8/114 journals

  • ENERGY & FUELS8/114 journals · Top 7.02%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY29/334 journals · Top 8.68%
  • CHEMISTRY, PHYSICAL18/162 journals · Top 11.11%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J.-S. Shin, H. Park, K. Park, M. Saqib, M. Jo, J.H. Kim, H.-T. Lim, M. Kim, J. Kim, J.-Y. Park. Activity of layered swedenborgite structured Y0.8Er0.2BaCo3.2Ga0.8O7+δ for oxygen electrode reactions in at intermediate temperature reversible ceramic cells. Journal of Materials Chemistry A, 9, 607-621, (2021).

@article{esrl2021paper81,
  title = {Activity of layered swedenborgite structured Y0.8Er0.2BaCo3.2Ga0.8O7+δ for oxygen electrode reactions in at intermediate temperature reversible ceramic cells},
  author = {J.-S. Shin and H. Park and K. Park and M. Saqib and M. Jo and J.H. Kim and H.-T. Lim and M. Kim and J. Kim and J.-Y. Park},
  journal = {Journal of Materials Chemistry A},
  year = {2021},
  url = {https://doi.org/10.1039/d0ta11000k},
  doi = {10.1039/d0ta11000k}
}
Energy Storage Materials, 33, 276-282 (2020)2020

High-power rhombohedral-Fe2(SO4)3 with outstanding cycle performance as Fe-based cathode for K-ion batteries

J. Kang, W. Ko, H. Park, Y. Lee, J.H. Jo, J.U. Choi, S.-T. Myung, J. Kim*

Potassium
IF 16.3JCR Top 4.78%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/314 journals · Top 4.78%
  • CHEMISTRY, PHYSICAL10/159 journals · Top 6.29%
  • NANOSCIENCE & NANOTECHNOLOGY8/103 journals · Top 7.77%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J. Kang, W. Ko, H. Park, Y. Lee, J.H. Jo, J.U. Choi, S.-T. Myung, J. Kim*. High-power rhombohedral-Fe2(SO4)3 with outstanding cycle performance as Fe-based cathode for K-ion batteries. Energy Storage Materials, 33, 276-282 (2020).

@article{esrl2020paper82,
  title = {High-power rhombohedral-Fe2(SO4)3 with outstanding cycle performance as Fe-based cathode for K-ion batteries},
  author = {J. Kang and W. Ko and H. Park and Y. Lee and J.H. Jo and J.U. Choi and S.-T. Myung and J. Kim},
  journal = {Energy Storage Materials},
  year = {2020},
  url = {https://doi.org/10.1016/j.ensm.2020.08.024},
  doi = {10.1016/j.ensm.2020.08.024}
}
Advanced Energy Materials, 10, 2001595 (2020)2020

New Insight on Open‐Structured Sodium Vanadium Oxide as High‐Capacity and Long Life Cathode for Zn–Ion Storage: Structure, Electrochemistry, and First‐Principles Calculation

J.H. Jo, Y. Aniskevich, J. Kim†, J.U Choi, H.J Kim, H. Kim, G. Ragoisha, A. Mazanik, E. Streltsove, S.-T Myung

Sodium / NaModeling
IF 25.2JCR Top 3.14%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 5/159 journals

  • CHEMISTRY, PHYSICAL5/159 journals · Top 3.14%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/314 journals · Top 3.18%
  • PHYSICS, APPLIED5/155 journals · Top 3.23%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%
  • ENERGY & FUELS5/112 journals · Top 4.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J.H. Jo, Y. Aniskevich, J. Kim†, J.U Choi, H.J Kim, H. Kim, G. Ragoisha, A. Mazanik, E. Streltsove, S.-T Myung. New Insight on Open‐Structured Sodium Vanadium Oxide as High‐Capacity and Long Life Cathode for Zn–Ion Storage: Structure, Electrochemistry, and First‐Principles Calculation. Advanced Energy Materials, 10, 2001595 (2020).

@article{esrl2020paper83,
  title = {New Insight on Open‐Structured Sodium Vanadium Oxide as High‐Capacity and Long Life Cathode for Zn–Ion Storage: Structure, Electrochemistry, and First‐Principles Calculation},
  author = {J.H. Jo and Y. Aniskevich and J. Kim and J.U Choi and H.J Kim and H. Kim and G. Ragoisha and A. Mazanik and E. Streltsove and S.-T Myung},
  journal = {Advanced Energy Materials},
  year = {2020},
  url = {https://doi.org/10.1002/aenm.202001595},
  doi = {10.1002/aenm.202001595}
}
Nano Energy, 77, 105175 (2020)2020

Exceptionally high-energy tunnel-type V1.5Cr0.5O4.5H nanocomposite as a novel cathode for Na-ion batteries

W. Ko, J.-G. Yoo, H. Park, Y. Lee, I. Kang, J. Kang, J.H. Jo, J.U. Choi, J. Hong, S.-T. Myung, J. Kim*

Sodium / Na
IF 16.6JCR Top 4.46%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 14/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY14/314 journals · Top 4.46%
  • PHYSICS, APPLIED8/155 journals · Top 5.16%
  • CHEMISTRY, PHYSICAL9/159 journals · Top 5.66%
  • NANOSCIENCE & NANOTECHNOLOGY7/103 journals · Top 6.80%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W. Ko, J.-G. Yoo, H. Park, Y. Lee, I. Kang, J. Kang, J.H. Jo, J.U. Choi, J. Hong, S.-T. Myung, J. Kim*. Exceptionally high-energy tunnel-type V1.5Cr0.5O4.5H nanocomposite as a novel cathode for Na-ion batteries. Nano Energy, 77, 105175 (2020).

@article{esrl2020paper84,
  title = {Exceptionally high-energy tunnel-type V1.5Cr0.5O4.5H nanocomposite as a novel cathode for Na-ion batteries},
  author = {W. Ko and J.-G. Yoo and H. Park and Y. Lee and I. Kang and J. Kang and J.H. Jo and J.U. Choi and J. Hong and S.-T. Myung and J. Kim},
  journal = {Nano Energy},
  year = {2020},
  url = {https://doi.org/10.1016/j.nanoen.2020.105175},
  doi = {10.1016/j.nanoen.2020.105175}
}
Journal of Materials Chemistry A, 8, 13776–13786 (2020)2020

High-energy O3-Na1-2xCax[Ni0.5Mn0.5]O2 cathode for long-life sodium-ion batteries

T.-Y. Yu, J. Kim, J.-Y. Hwang, H. Kim, G. Han, H.-G. Jung, Y.-K. Sun

Sodium / Na
IF 11.3JCR Top 7.14%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 8/112 journals

  • ENERGY & FUELS8/112 journals · Top 7.14%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY24/314 journals · Top 7.64%
  • CHEMISTRY, PHYSICAL17/159 journals · Top 10.69%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

T.-Y. Yu, J. Kim, J.-Y. Hwang, H. Kim, G. Han, H.-G. Jung, Y.-K. Sun. High-energy O3-Na1-2xCax[Ni0.5Mn0.5]O2 cathode for long-life sodium-ion batteries. Journal of Materials Chemistry A, 8, 13776–13786 (2020).

@article{esrl2020paper85,
  title = {High-energy O3-Na1-2xCax[Ni0.5Mn0.5]O2 cathode for long-life sodium-ion batteries},
  author = {T.-Y. Yu and J. Kim and J.-Y. Hwang and H. Kim and G. Han and H.-G. Jung and Y.-K. Sun},
  journal = {Journal of Materials Chemistry A},
  year = {2020},
  url = {https://doi.org/10.1039/d0ta04847j},
  doi = {10.1039/d0ta04847j}
}
Carbon Letters, 1-9, (2020)2020

Oriented Wrinkle Textures of Free-Standing Graphene Nanosheets: Application as a High Performance Lithium-Ion Battery Anode

H.-S. Jeong, J. Kim†, K.-I. Jo, J. Kee, J.-H. Choi, J. Koo

Lithium / Li
IF 2.0JCR Top 58.76%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 104/177 journals

  • CHEMISTRY, MULTIDISCIPLINARY104/177 journals · Top 58.76%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY198/314 journals · Top 63.06%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H.-S. Jeong, J. Kim†, K.-I. Jo, J. Kee, J.-H. Choi, J. Koo. Oriented Wrinkle Textures of Free-Standing Graphene Nanosheets: Application as a High Performance Lithium-Ion Battery Anode. Carbon Letters, 1-9, (2020).

@article{esrl2020paper86,
  title = {Oriented Wrinkle Textures of Free-Standing Graphene Nanosheets: Application as a High Performance Lithium-Ion Battery Anode},
  author = {H.-S. Jeong and J. Kim and K.-I. Jo and J. Kee and J.-H. Choi and J. Koo},
  journal = {Carbon Letters},
  year = {2020},
  url = {https://doi.org/10.1007/s42823-020-00163-9},
  doi = {10.1007/s42823-020-00163-9}
}
Advanced Energy Materials, 10, 202001111 (2020)2020

High-Voltage Oxygen-Redox-Based Cathode for Rechargeable Sodium-Ion Batteries

A. Konarov, HJ Kim, JH Jo, N. Voronina, YS Lee, Z. Bakenov, J Kim*, ST Myung

Sodium / NaOxygen redox
IF 25.2JCR Top 3.14%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 5/159 journals

  • CHEMISTRY, PHYSICAL5/159 journals · Top 3.14%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/314 journals · Top 3.18%
  • PHYSICS, APPLIED5/155 journals · Top 3.23%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%
  • ENERGY & FUELS5/112 journals · Top 4.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

A. Konarov, HJ Kim, JH Jo, N. Voronina, YS Lee, Z. Bakenov, J Kim*, ST Myung. High-Voltage Oxygen-Redox-Based Cathode for Rechargeable Sodium-Ion Batteries. Advanced Energy Materials, 10, 202001111 (2020).

@article{esrl2020paper87,
  title = {High-Voltage Oxygen-Redox-Based Cathode for Rechargeable Sodium-Ion Batteries},
  author = {A. Konarov and HJ Kim and JH Jo and N. Voronina and YS Lee and Z. Bakenov and J Kim and ST Myung},
  journal = {Advanced Energy Materials},
  year = {2020},
  url = {https://doi.org/10.1002/aenm.202001111},
  doi = {10.1002/aenm.202001111}
}
Advanced Energy Materials, 10, 202000521 (2020)2020

High-Voltage-Driven Surface Structuring and Electrochemical Stabilization of Ni-Rich Layered Cathode Materials for Li Rechargeable Batteries

SH Song, MS Cho, IC Park, JG Yoo, KT Ko, JH Hong, J Kim, SK Jung, M. Avdeev, SD Ji, SS Lee, JN Bang, HS Kim*

Lithium / LiInterfaces
IF 25.2JCR Top 3.14%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 5/159 journals

  • CHEMISTRY, PHYSICAL5/159 journals · Top 3.14%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/314 journals · Top 3.18%
  • PHYSICS, APPLIED5/155 journals · Top 3.23%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%
  • ENERGY & FUELS5/112 journals · Top 4.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

SH Song, MS Cho, IC Park, JG Yoo, KT Ko, JH Hong, J Kim, SK Jung, M. Avdeev, SD Ji, SS Lee, JN Bang, HS Kim*. High-Voltage-Driven Surface Structuring and Electrochemical Stabilization of Ni-Rich Layered Cathode Materials for Li Rechargeable Batteries. Advanced Energy Materials, 10, 202000521 (2020).

@article{esrl2020paper88,
  title = {High-Voltage-Driven Surface Structuring and Electrochemical Stabilization of Ni-Rich Layered Cathode Materials for Li Rechargeable Batteries},
  author = {SH Song and MS Cho and IC Park and JG Yoo and KT Ko and JH Hong and J Kim and SK Jung and M. Avdeev and SD Ji and SS Lee and JN Bang and HS Kim},
  journal = {Advanced Energy Materials},
  year = {2020},
  url = {https://doi.org/10.1002/aenm.202000521},
  doi = {10.1002/aenm.202000521}
}
Small, 16, 202001090 (2020)2020

KTi2(PO4)3 Electrode with a Long Cycling Stability for Potassium-Ion Batteries

N Voronina, JH Jo, A Konarov, J Kim*, ST Myung

Potassium
IF 11.5JCR Top 6.45%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 10/155 journals

  • PHYSICS, APPLIED10/155 journals · Top 6.45%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY23/314 journals · Top 7.32%
  • CHEMISTRY, PHYSICAL15/159 journals · Top 9.43%
  • PHYSICS, CONDENSED MATTER7/69 journals · Top 10.14%
  • CHEMISTRY, MULTIDISCIPLINARY18/177 journals · Top 10.17%
  • NANOSCIENCE & NANOTECHNOLOGY13/103 journals · Top 12.62%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

N Voronina, JH Jo, A Konarov, J Kim*, ST Myung. KTi2(PO4)3 Electrode with a Long Cycling Stability for Potassium-Ion Batteries. Small, 16, 202001090 (2020).

@article{esrl2020paper89,
  title = {KTi2(PO4)3 Electrode with a Long Cycling Stability for Potassium-Ion Batteries},
  author = {N Voronina and JH Jo and A Konarov and J Kim and ST Myung},
  journal = {Small},
  year = {2020},
  url = {https://doi.org/10.1002/smll.202001090},
  doi = {10.1002/smll.202001090}
}
Journal of Power Sources, 455, 227976 (2020)2020

Revealing sodium storage mechanism in lithium titanium phosphate: Combined experimental and theoretical study

N Voronina, JH Jo, JU Choi, A Konarov, J Kim*, ST Myung

Lithium / LiSodium / Na
IF 8.2JCR Top 8.93%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 10/112 journals

  • ENERGY & FUELS10/112 journals · Top 8.93%
  • ELECTROCHEMISTRY3/27 journals · Top 11.11%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY38/314 journals · Top 12.10%
  • CHEMISTRY, PHYSICAL27/159 journals · Top 16.98%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

N Voronina, JH Jo, JU Choi, A Konarov, J Kim*, ST Myung. Revealing sodium storage mechanism in lithium titanium phosphate: Combined experimental and theoretical study. Journal of Power Sources, 455, 227976 (2020).

@article{esrl2020paper90,
  title = {Revealing sodium storage mechanism in lithium titanium phosphate: Combined experimental and theoretical study},
  author = {N Voronina and JH Jo and JU Choi and A Konarov and J Kim and ST Myung},
  journal = {Journal of Power Sources},
  year = {2020},
  url = {https://doi.org/10.1016/j.jpowsour.2020.227976},
  doi = {10.1016/j.jpowsour.2020.227976}
}
Energy Storage Materials, 28, 47-54 (2020)2020

Development of K4Fe3(PO4)2(P2O7) as a novel Fe-based cathode with high energy densities and excellent cyclability in Rechargeable Potassium Batteries

HY Park, HS Kim, WS Ko, JH Jo, YS Lee, JM Kang, IC Park, ST Myung, J Kim*

Potassium
IF 16.3JCR Top 4.78%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/314 journals · Top 4.78%
  • CHEMISTRY, PHYSICAL10/159 journals · Top 6.29%
  • NANOSCIENCE & NANOTECHNOLOGY8/103 journals · Top 7.77%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

HY Park, HS Kim, WS Ko, JH Jo, YS Lee, JM Kang, IC Park, ST Myung, J Kim*. Development of K4Fe3(PO4)2(P2O7) as a novel Fe-based cathode with high energy densities and excellent cyclability in Rechargeable Potassium Batteries. Energy Storage Materials, 28, 47-54 (2020).

@article{esrl2020paper91,
  title = {Development of K4Fe3(PO4)2(P2O7) as a novel Fe-based cathode with high energy densities and excellent cyclability in Rechargeable Potassium Batteries},
  author = {HY Park and HS Kim and WS Ko and JH Jo and YS Lee and JM Kang and IC Park and ST Myung and J Kim},
  journal = {Energy Storage Materials},
  year = {2020},
  url = {https://doi.org/10.1016/j.ensm.2020.02.031},
  doi = {10.1016/j.ensm.2020.02.031}
}
Energy Storage Materials, 25, 714-723 (2020)2020

An Optimized Approach Toward High Energy Density Cathode Material for K-Ion Batteries

JU Choi, YJ Park, JH Jo, YH Jung, DC Ahn, TY Jeon, KS Lee, HS Kim, SS Lee, J Kim*, ST Myung

Potassium
IF 16.3JCR Top 4.78%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/314 journals · Top 4.78%
  • CHEMISTRY, PHYSICAL10/159 journals · Top 6.29%
  • NANOSCIENCE & NANOTECHNOLOGY8/103 journals · Top 7.77%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JU Choi, YJ Park, JH Jo, YH Jung, DC Ahn, TY Jeon, KS Lee, HS Kim, SS Lee, J Kim*, ST Myung. An Optimized Approach Toward High Energy Density Cathode Material for K-Ion Batteries. Energy Storage Materials, 25, 714-723 (2020).

@article{esrl2020paper92,
  title = {An Optimized Approach Toward High Energy Density Cathode Material for K-Ion Batteries},
  author = {JU Choi and YJ Park and JH Jo and YH Jung and DC Ahn and TY Jeon and KS Lee and HS Kim and SS Lee and J Kim and ST Myung},
  journal = {Energy Storage Materials},
  year = {2020},
  url = {https://doi.org/10.1016/j.ensm.2020.02.025},
  doi = {10.1016/j.ensm.2020.02.025}
}
Small Methods, 4, 1900847 (2020)2020

Development of Novel cathode with Large Lithium Storage Mechanism Based on Pyrophosphate-Based Conversion Reaction for Rechargeable Lithium Batteries

YS Lee, JH Jo, HY Park, WS Ko, JM Kang, ST Myung, YK Sun, J Kim*

Lithium / Li
IF 12.1JCR Top 7.01%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 22/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY22/314 journals · Top 7.01%
  • CHEMISTRY, PHYSICAL13/159 journals · Top 8.18%
  • NANOSCIENCE & NANOTECHNOLOGY12/103 journals · Top 11.65%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YS Lee, JH Jo, HY Park, WS Ko, JM Kang, ST Myung, YK Sun, J Kim*. Development of Novel cathode with Large Lithium Storage Mechanism Based on Pyrophosphate-Based Conversion Reaction for Rechargeable Lithium Batteries. Small Methods, 4, 1900847 (2020).

@article{esrl2020paper93,
  title = {Development of Novel cathode with Large Lithium Storage Mechanism Based on Pyrophosphate-Based Conversion Reaction for Rechargeable Lithium Batteries},
  author = {YS Lee and JH Jo and HY Park and WS Ko and JM Kang and ST Myung and YK Sun and J Kim},
  journal = {Small Methods},
  year = {2020},
  url = {https://doi.org/10.1002/smtd.201900847},
  doi = {10.1002/smtd.201900847}
}
Energy Storage Materials, 25, 714-723 (2020)2020

Facile Migration of Potassium Ions in a Ternary P3-type K0.5[Mn0.8Fe0.1Ni0.1]O2 Cathode in Rechargeable Potassium Batteries

JU Choi, J Kim†, JH Jo, HJ Kim, YH Jung, DC Ahn, YK Sun, ST Myung

Potassium
IF 16.3JCR Top 4.78%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/314 journals · Top 4.78%
  • CHEMISTRY, PHYSICAL10/159 journals · Top 6.29%
  • NANOSCIENCE & NANOTECHNOLOGY8/103 journals · Top 7.77%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JU Choi, J Kim†, JH Jo, HJ Kim, YH Jung, DC Ahn, YK Sun, ST Myung. Facile Migration of Potassium Ions in a Ternary P3-type K0.5[Mn0.8Fe0.1Ni0.1]O2 Cathode in Rechargeable Potassium Batteries. Energy Storage Materials, 25, 714-723 (2020).

@article{esrl2020paper94,
  title = {Facile Migration of Potassium Ions in a Ternary P3-type K0.5[Mn0.8Fe0.1Ni0.1]O2 Cathode in Rechargeable Potassium Batteries},
  author = {JU Choi and J Kim and JH Jo and HJ Kim and YH Jung and DC Ahn and YK Sun and ST Myung},
  journal = {Energy Storage Materials},
  year = {2020},
  url = {https://doi.org/10.1016/j.ensm.2019.09.015},
  doi = {10.1016/j.ensm.2019.09.015}
}
Advanced Energy Materials, 10, 1903605 (2020)2020

P2-K0.75[Ni1/3Mn2/3]O2 Cathode Material for High Power and Long Life Potassium-Ion Batteries

JH Jo, JU Choi , YJ Park, YH Jung, DC Ahn, TY Jeon, HS Kim, J Kim*, ST Myung

Potassium
IF 25.2JCR Top 3.14%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 5/159 journals

  • CHEMISTRY, PHYSICAL5/159 journals · Top 3.14%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/314 journals · Top 3.18%
  • PHYSICS, APPLIED5/155 journals · Top 3.23%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%
  • ENERGY & FUELS5/112 journals · Top 4.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JH Jo, JU Choi , YJ Park, YH Jung, DC Ahn, TY Jeon, HS Kim, J Kim*, ST Myung. P2-K0.75[Ni1/3Mn2/3]O2 Cathode Material for High Power and Long Life Potassium-Ion Batteries. Advanced Energy Materials, 10, 1903605 (2020).

@article{esrl2020paper95,
  title = {P2-K0.75[Ni1/3Mn2/3]O2 Cathode Material for High Power and Long Life Potassium-Ion Batteries},
  author = {JH Jo and JU Choi and YJ Park and YH Jung and DC Ahn and TY Jeon and HS Kim and J Kim and ST Myung},
  journal = {Advanced Energy Materials},
  year = {2020},
  url = {https://doi.org/10.1002/aenm.201903605},
  doi = {10.1002/aenm.201903605}
}
ACS Sustainable Chemistry & Engineering, 8, 163-171 (2020)2020

Development of new mixed-polyanion cathode with superior electrochemical performances for Na-ion batteries

JM Kang†, HY Park†, HS Kim, JH Jo, WS Ko, YS Lee, ST Myung, J Kim*

Sodium / Na
IF 7.6JCR Top 5.59%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENGINEERING, CHEMICAL · 8/143 journals

  • ENGINEERING, CHEMICAL8/143 journals · Top 5.59%
  • GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY4/41 journals · Top 9.76%
  • CHEMISTRY, MULTIDISCIPLINARY25/177 journals · Top 14.12%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JM Kang†, HY Park†, HS Kim, JH Jo, WS Ko, YS Lee, ST Myung, J Kim*. Development of new mixed-polyanion cathode with superior electrochemical performances for Na-ion batteries. ACS Sustainable Chemistry & Engineering, 8, 163-171 (2020).

@article{esrl2020paper96,
  title = {Development of new mixed-polyanion cathode with superior electrochemical performances for Na-ion batteries},
  author = {JM Kang and HY Park and HS Kim and JH Jo and WS Ko and YS Lee and ST Myung and J Kim},
  journal = {ACS Sustainable Chemistry \& Engineering},
  year = {2020},
  url = {https://doi.org/10.1021/acssuschemeng.9b04944},
  doi = {10.1021/acssuschemeng.9b04944}
}
Energy Storage Materials, 24, 458-466 (2020)2020

New conversion chemistry of CuSO4 as ultra-high-energy cathode material for rechargeable sodium battery

YS Lee, CH Jo, JK Yoo, JU Choi, WS Ko , HY Park, JH Jo, DO Shin, ST Myung, J Kim*

Sodium / Na
IF 16.3JCR Top 4.78%2019 metricsDetails · 지표 정보

논문 게재연도(2020)의 전년도인 2019년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/314 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/314 journals · Top 4.78%
  • CHEMISTRY, PHYSICAL10/159 journals · Top 6.29%
  • NANOSCIENCE & NANOTECHNOLOGY8/103 journals · Top 7.77%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YS Lee, CH Jo, JK Yoo, JU Choi, WS Ko , HY Park, JH Jo, DO Shin, ST Myung, J Kim*. New conversion chemistry of CuSO4 as ultra-high-energy cathode material for rechargeable sodium battery. Energy Storage Materials, 24, 458-466 (2020).

@article{esrl2020paper97,
  title = {New conversion chemistry of CuSO4 as ultra-high-energy cathode material for rechargeable sodium battery},
  author = {YS Lee and CH Jo and JK Yoo and JU Choi and WS Ko and HY Park and JH Jo and DO Shin and ST Myung and J Kim},
  journal = {Energy Storage Materials},
  year = {2020},
  url = {https://doi.org/10.1016/j.ensm.2019.07.013},
  doi = {10.1016/j.ensm.2019.07.013}
}
Nano Energy, 66, 104184 (2019)2019

Unveiling yavapaiite-type KxFe(SO4)2 as a new Fe-based cathode with outstanding electrochemical performance for potassium-ion batteries

WS Ko†, HY Park†, JH Jo, YS Lee, JM Kang, YH Jung, TY Jeon, ST Myung, J Kim*

Potassium
IF 15.5JCR Top 4.05%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 6/148 journals

  • CHEMISTRY, PHYSICAL6/148 journals · Top 4.05%
  • PHYSICS, APPLIED7/148 journals · Top 4.73%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY16/293 journals · Top 5.46%
  • NANOSCIENCE & NANOTECHNOLOGY8/94 journals · Top 8.51%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

WS Ko†, HY Park†, JH Jo, YS Lee, JM Kang, YH Jung, TY Jeon, ST Myung, J Kim*. Unveiling yavapaiite-type KxFe(SO4)2 as a new Fe-based cathode with outstanding electrochemical performance for potassium-ion batteries. Nano Energy, 66, 104184 (2019).

@article{esrl2019paper98,
  title = {Unveiling yavapaiite-type KxFe(SO4)2 as a new Fe-based cathode with outstanding electrochemical performance for potassium-ion batteries},
  author = {WS Ko and HY Park and JH Jo and YS Lee and JM Kang and YH Jung and TY Jeon and ST Myung and J Kim},
  journal = {Nano Energy},
  year = {2019},
  url = {https://doi.org/10.1016/j.nanoen.2019.104184},
  doi = {10.1016/j.nanoen.2019.104184}
}
ACS Nano, 13, 11707-11716 (2019)2019

The Conversion Chemistry for High-Energy Cathodes of Rechargeable Sodium Batteries

YS Lee†, JK Yoo†, JH Jo, HJ Kim, HY Park, CH Jo, WS Ko, H Yashiro, ST Myung, J Kim*

Sodium / Na
IF 13.9JCR Top 6.08%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 9/148 journals

  • CHEMISTRY, PHYSICAL9/148 journals · Top 6.08%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY18/293 journals · Top 6.14%
  • CHEMISTRY, MULTIDISCIPLINARY14/172 journals · Top 8.14%
  • NANOSCIENCE & NANOTECHNOLOGY9/94 journals · Top 9.57%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YS Lee†, JK Yoo†, JH Jo, HJ Kim, HY Park, CH Jo, WS Ko, H Yashiro, ST Myung, J Kim*. The Conversion Chemistry for High-Energy Cathodes of Rechargeable Sodium Batteries. ACS Nano, 13, 11707-11716 (2019).

@article{esrl2019paper99,
  title = {The Conversion Chemistry for High-Energy Cathodes of Rechargeable Sodium Batteries},
  author = {YS Lee and JK Yoo and JH Jo and HJ Kim and HY Park and CH Jo and WS Ko and H Yashiro and ST Myung and J Kim},
  journal = {ACS Nano},
  year = {2019},
  url = {https://doi.org/10.1021/acsnano.9b05635},
  doi = {10.1021/acsnano.9b05635}
}
Journal of Materials Chemistry A, 7, 21362-21370 (2019)2019

A new P2-type layered oxide cathode with superior full-cell performances for K-ion battery

JY Hwang, J Kim†, TY Yu, HG Jung , JK Kim, KH Kim, YK Sun

Potassium
IF 10.7JCR Top 5.83%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 6/103 journals

  • ENERGY & FUELS6/103 journals · Top 5.83%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY21/293 journals · Top 7.17%
  • CHEMISTRY, PHYSICAL14/148 journals · Top 9.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JY Hwang, J Kim†, TY Yu, HG Jung , JK Kim, KH Kim, YK Sun. A new P2-type layered oxide cathode with superior full-cell performances for K-ion battery. Journal of Materials Chemistry A, 7, 21362-21370 (2019).

@article{esrl2019paper100,
  title = {A new P2-type layered oxide cathode with superior full-cell performances for K-ion battery},
  author = {JY Hwang and J Kim and TY Yu and HG Jung and JK Kim and KH Kim and YK Sun},
  journal = {Journal of Materials Chemistry A},
  year = {2019},
  url = {https://doi.org/10.1039/c9ta07837a},
  doi = {10.1039/c9ta07837a}
}
Advanced Energy Materials, 9, 1901181 (2019)2019

Controlled Oxygen Redox for Excellent Power Capability in Layered Sodium-Based Compounds

HJ Kim, A Konarov, JH Jo, JU Choi, KW Lhm, HK Lee, J Kim*, ST Myung

Sodium / NaOxygen redox
IF 24.9JCR Top 2.03%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 3/148 journals

  • CHEMISTRY, PHYSICAL3/148 journals · Top 2.03%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY6/293 journals · Top 2.05%
  • PHYSICS, APPLIED4/148 journals · Top 2.70%
  • ENERGY & FUELS4/103 journals · Top 3.88%
  • PHYSICS, CONDENSED MATTER4/68 journals · Top 5.88%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

HJ Kim, A Konarov, JH Jo, JU Choi, KW Lhm, HK Lee, J Kim*, ST Myung. Controlled Oxygen Redox for Excellent Power Capability in Layered Sodium-Based Compounds. Advanced Energy Materials, 9, 1901181 (2019).

@article{esrl2019paper101,
  title = {Controlled Oxygen Redox for Excellent Power Capability in Layered Sodium-Based Compounds},
  author = {HJ Kim and A Konarov and JH Jo and JU Choi and KW Lhm and HK Lee and J Kim and ST Myung},
  journal = {Advanced Energy Materials},
  year = {2019},
  url = {https://doi.org/10.1002/aenm.201901181},
  doi = {10.1002/aenm.201901181}
}
Journal of Power Sources, 434, 226750 (2019)2019

Monoclinic Fe2(SO4)3: A new Fe-based cathode material with superior electrochemical performances for Na-ion batteries

HY Park, JK Yoo, WS Ko, YS Lee, HS Kim, IC Park, ST Myung, J Kim*

Sodium / Na
IF 7.5JCR Top 10.68%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 11/103 journals

  • ENERGY & FUELS11/103 journals · Top 10.68%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY32/293 journals · Top 10.92%
  • ELECTROCHEMISTRY3/26 journals · Top 11.54%
  • CHEMISTRY, PHYSICAL26/148 journals · Top 17.57%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

HY Park, JK Yoo, WS Ko, YS Lee, HS Kim, IC Park, ST Myung, J Kim*. Monoclinic Fe2(SO4)3: A new Fe-based cathode material with superior electrochemical performances for Na-ion batteries. Journal of Power Sources, 434, 226750 (2019).

@article{esrl2019paper102,
  title = {Monoclinic Fe2(SO4)3: A new Fe-based cathode material with superior electrochemical performances for Na-ion batteries},
  author = {HY Park and JK Yoo and WS Ko and YS Lee and HS Kim and IC Park and ST Myung and J Kim},
  journal = {Journal of Power Sources},
  year = {2019},
  url = {https://doi.org/10.1016/j.jpowsour.2019.226750},
  doi = {10.1016/j.jpowsour.2019.226750}
}
Journal of Power Sources, 432, 1-7 (2019)2019

Development of Na2FePO4F/Conducting-Polymer composite as an exceptionally high performance cathode material for Na-ion batteries

WS Ko, JK Yoo, HY Park, YS Lee, HS Kim, YS Oh, ST Myung, J Kim*

Sodium / Na
IF 7.5JCR Top 10.68%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 11/103 journals

  • ENERGY & FUELS11/103 journals · Top 10.68%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY32/293 journals · Top 10.92%
  • ELECTROCHEMISTRY3/26 journals · Top 11.54%
  • CHEMISTRY, PHYSICAL26/148 journals · Top 17.57%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

WS Ko, JK Yoo, HY Park, YS Lee, HS Kim, YS Oh, ST Myung, J Kim*. Development of Na2FePO4F/Conducting-Polymer composite as an exceptionally high performance cathode material for Na-ion batteries. Journal of Power Sources, 432, 1-7 (2019).

@article{esrl2019paper103,
  title = {Development of Na2FePO4F/Conducting-Polymer composite as an exceptionally high performance cathode material for Na-ion batteries},
  author = {WS Ko and JK Yoo and HY Park and YS Lee and HS Kim and YS Oh and ST Myung and J Kim},
  journal = {Journal of Power Sources},
  year = {2019},
  url = {https://doi.org/10.1016/j.jpowsour.2019.05.066},
  doi = {10.1016/j.jpowsour.2019.05.066}
}
Advanced Functional Materials, 29, 1901912 (2019)2019

A New strategy to Build a High-Performance P' 2-Type Cathode Material through Titanium Doping for Sodium-Ion Batteries

YJ Park, JU Choi, JH Jo, CH Jo , J Kim*, ST Myung

Sodium / Na
IF 15.6JCR Top 3.38%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 5/148 journals

  • CHEMISTRY, PHYSICAL5/148 journals · Top 3.38%
  • PHYSICS, APPLIED6/148 journals · Top 4.05%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/293 journals · Top 5.12%
  • CHEMISTRY, MULTIDISCIPLINARY11/172 journals · Top 6.40%
  • PHYSICS, CONDENSED MATTER5/68 journals · Top 7.35%
  • NANOSCIENCE & NANOTECHNOLOGY7/94 journals · Top 7.45%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YJ Park, JU Choi, JH Jo, CH Jo , J Kim*, ST Myung. A New strategy to Build a High-Performance P' 2-Type Cathode Material through Titanium Doping for Sodium-Ion Batteries. Advanced Functional Materials, 29, 1901912 (2019).

@article{esrl2019paper104,
  title = {A New strategy to Build a High-Performance P' 2-Type Cathode Material through Titanium Doping for Sodium-Ion Batteries},
  author = {YJ Park and JU Choi and JH Jo and CH Jo and J Kim and ST Myung},
  journal = {Advanced Functional Materials},
  year = {2019},
  url = {https://doi.org/10.1002/adfm.201901912},
  doi = {10.1002/adfm.201901912}
}
Nano Energy, 61, 284-294 (2019)2019

K0.54 [Co0.5Mn0.5]O2: New cathode with high power capability for potassium-ion batteries

JU Choi, J Kim†, JY Hwang, JH Jo, YK Sun, ST Myung

Potassium
IF 15.5JCR Top 4.05%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 6/148 journals

  • CHEMISTRY, PHYSICAL6/148 journals · Top 4.05%
  • PHYSICS, APPLIED7/148 journals · Top 4.73%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY16/293 journals · Top 5.46%
  • NANOSCIENCE & NANOTECHNOLOGY8/94 journals · Top 8.51%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JU Choi, J Kim†, JY Hwang, JH Jo, YK Sun, ST Myung. K0.54 [Co0.5Mn0.5]O2: New cathode with high power capability for potassium-ion batteries. Nano Energy, 61, 284-294 (2019).

@article{esrl2019paper105,
  title = {K0.54 [Co0.5Mn0.5]O2: New cathode with high power capability for potassium-ion batteries},
  author = {JU Choi and J Kim and JY Hwang and JH Jo and YK Sun and ST Myung},
  journal = {Nano Energy},
  year = {2019},
  url = {https://doi.org/10.1016/j.nanoen.2019.04.062},
  doi = {10.1016/j.nanoen.2019.04.062}
}
Nano Energy, 59, 197-206 (2019)2019

Exceptionally highly stable cycling performance and facile oxygen-redox of manganese-based cathode materials for rechargeable sodium batteries

A Konarov, JH Jo, JU Choi, Z Bakenov, H Yashiro, J Kim*, ST Myung

Sodium / NaOxygen redox
IF 15.5JCR Top 4.05%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 6/148 journals

  • CHEMISTRY, PHYSICAL6/148 journals · Top 4.05%
  • PHYSICS, APPLIED7/148 journals · Top 4.73%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY16/293 journals · Top 5.46%
  • NANOSCIENCE & NANOTECHNOLOGY8/94 journals · Top 8.51%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

A Konarov, JH Jo, JU Choi, Z Bakenov, H Yashiro, J Kim*, ST Myung. Exceptionally highly stable cycling performance and facile oxygen-redox of manganese-based cathode materials for rechargeable sodium batteries. Nano Energy, 59, 197-206 (2019).

@article{esrl2019paper106,
  title = {Exceptionally highly stable cycling performance and facile oxygen-redox of manganese-based cathode materials for rechargeable sodium batteries},
  author = {A Konarov and JH Jo and JU Choi and Z Bakenov and H Yashiro and J Kim and ST Myung},
  journal = {Nano Energy},
  year = {2019},
  url = {https://doi.org/10.1016/j.nanoen.2019.02.042},
  doi = {10.1016/j.nanoen.2019.02.042}
}
Advanced Energy Materials, 9, 1900603 (2019)2019

Hollandite- Type VO1. 75 (OH) 0.5: Effective Sodium Storage for High-Performance Sodium-Ion Batteries

JH Jo, JU Choi, MK Cho, Y Aniskevich, H Kim, HS Kim, G. Ragoisha, E. Streltsov, J Kim*, ST Myung

Sodium / Na
IF 24.9JCR Top 2.03%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 3/148 journals

  • CHEMISTRY, PHYSICAL3/148 journals · Top 2.03%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY6/293 journals · Top 2.05%
  • PHYSICS, APPLIED4/148 journals · Top 2.70%
  • ENERGY & FUELS4/103 journals · Top 3.88%
  • PHYSICS, CONDENSED MATTER4/68 journals · Top 5.88%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JH Jo, JU Choi, MK Cho, Y Aniskevich, H Kim, HS Kim, G. Ragoisha, E. Streltsov, J Kim*, ST Myung. Hollandite- Type VO1. 75 (OH) 0.5: Effective Sodium Storage for High-Performance Sodium-Ion Batteries. Advanced Energy Materials, 9, 1900603 (2019).

@article{esrl2019paper107,
  title = {Hollandite- Type VO1. 75 (OH) 0.5: Effective Sodium Storage for High-Performance Sodium-Ion Batteries},
  author = {JH Jo and JU Choi and MK Cho and Y Aniskevich and H Kim and HS Kim and G. Ragoisha and E. Streltsov and J Kim and ST Myung},
  journal = {Advanced Energy Materials},
  year = {2019},
  url = {https://doi.org/10.1002/aenm.201900603},
  doi = {10.1002/aenm.201900603}
}
Journal of The Electrochemical Society, 166 (4), A787-A792 (2019)2019

Optimal Condition of Solid-Electrolyte-Interphase Prepared by Controlled Prelithiation for High Performance Li-Ion Batteries

DI Lee, HW Yang, WS Kang, J Kim*, SJ Kim

Lithium / LiInterfaces
IF 3.1JCR Top 20.00%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, COATINGS & FILMS · 4/20 journals

  • MATERIALS SCIENCE, COATINGS & FILMS4/20 journals · Top 20.00%
  • ELECTROCHEMISTRY11/26 journals · Top 42.31%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

DI Lee, HW Yang, WS Kang, J Kim*, SJ Kim. Optimal Condition of Solid-Electrolyte-Interphase Prepared by Controlled Prelithiation for High Performance Li-Ion Batteries. Journal of The Electrochemical Society, 166 (4), A787-A792 (2019).

@article{esrl2019paper108,
  title = {Optimal Condition of Solid-Electrolyte-Interphase Prepared by Controlled Prelithiation for High Performance Li-Ion Batteries},
  author = {DI Lee and HW Yang and WS Kang and J Kim and SJ Kim},
  journal = {Journal of The Electrochemical Society},
  year = {2019},
  url = {https://doi.org/10.1149/2.1201904jes},
  doi = {10.1149/2.1201904jes}
}
Journal of Materials Chemistry A, 7, 5748-5759 (2019)2019

Nb-doped titanium phosphate for sodium storage: electrochemical performance and structural insights

N Voronina, JH Jo, JU Choi, CH Jo, J Kim, ST Myung

Sodium / Na
IF 10.7JCR Top 5.83%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 6/103 journals

  • ENERGY & FUELS6/103 journals · Top 5.83%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY21/293 journals · Top 7.17%
  • CHEMISTRY, PHYSICAL14/148 journals · Top 9.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

N Voronina, JH Jo, JU Choi, CH Jo, J Kim, ST Myung. Nb-doped titanium phosphate for sodium storage: electrochemical performance and structural insights. Journal of Materials Chemistry A, 7, 5748-5759 (2019).

@article{esrl2019paper109,
  title = {Nb-doped titanium phosphate for sodium storage: electrochemical performance and structural insights},
  author = {N Voronina and JH Jo and JU Choi and CH Jo and J Kim and ST Myung},
  journal = {Journal of Materials Chemistry A},
  year = {2019},
  url = {https://doi.org/10.1039/c8ta11517f},
  doi = {10.1039/c8ta11517f}
}
Advanced Energy Materials, 9, 1803346 (2019)2019

A New P2-Type Layered Oxide Cathode with Extremely High Energy Density for Sodium-Ion Batteries

JY Hwang, J Kim†, TY Yu, YK Sun

Sodium / Na
IF 24.9JCR Top 2.03%2018 metricsDetails · 지표 정보

논문 게재연도(2019)의 전년도인 2018년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 3/148 journals

  • CHEMISTRY, PHYSICAL3/148 journals · Top 2.03%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY6/293 journals · Top 2.05%
  • PHYSICS, APPLIED4/148 journals · Top 2.70%
  • ENERGY & FUELS4/103 journals · Top 3.88%
  • PHYSICS, CONDENSED MATTER4/68 journals · Top 5.88%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JY Hwang, J Kim†, TY Yu, YK Sun. A New P2-Type Layered Oxide Cathode with Extremely High Energy Density for Sodium-Ion Batteries. Advanced Energy Materials, 9, 1803346 (2019).

@article{esrl2019paper110,
  title = {A New P2-Type Layered Oxide Cathode with Extremely High Energy Density for Sodium-Ion Batteries},
  author = {JY Hwang and J Kim and TY Yu and YK Sun},
  journal = {Advanced Energy Materials},
  year = {2019},
  url = {https://doi.org/10.1002/aenm.201803346},
  doi = {10.1002/aenm.201803346}
}
Journal of Power Sources, 400, 613-620 (2018)2018

Highly enhancement of the SiOx nanocomposite through Ti-doping and carbon-coating for high-performance Li-ion battery

HW Yang, DI Lee, N Kang, JK Yoo, ST Myung, J Kim*, SJ Kim

Lithium / LiInterfaces
IF 6.9JCR Top 9.28%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 9/97 journals

  • ENERGY & FUELS9/97 journals · Top 9.28%
  • ELECTROCHEMISTRY3/28 journals · Top 10.71%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY34/285 journals · Top 11.93%
  • CHEMISTRY, PHYSICAL26/147 journals · Top 17.69%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

HW Yang, DI Lee, N Kang, JK Yoo, ST Myung, J Kim*, SJ Kim. Highly enhancement of the SiOx nanocomposite through Ti-doping and carbon-coating for high-performance Li-ion battery. Journal of Power Sources, 400, 613-620 (2018).

@article{esrl2018paper111,
  title = {Highly enhancement of the SiOx nanocomposite through Ti-doping and carbon-coating for high-performance Li-ion battery},
  author = {HW Yang and DI Lee and N Kang and JK Yoo and ST Myung and J Kim and SJ Kim},
  journal = {Journal of Power Sources},
  year = {2018},
  url = {https://doi.org/10.1016/j.jpowsour.2018.08.065},
  doi = {10.1016/j.jpowsour.2018.08.065}
}
Chemistry of Materials, 30 (19), 6777–6787 (2018)2018

Open-structured vanadium dioxide as an intercalation host for Zn ions: investigation by first-principles calculation and experiments

JS Park, JH Jo, Y Aniskevich, A Bakavets, G Ragoisha, E Streltsov, J Kim*, ST Myung

Modeling
IF 9.9JCR Top 7.37%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 21/285 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY21/285 journals · Top 7.37%
  • CHEMISTRY, PHYSICAL15/147 journals · Top 10.20%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JS Park, JH Jo, Y Aniskevich, A Bakavets, G Ragoisha, E Streltsov, J Kim*, ST Myung. Open-structured vanadium dioxide as an intercalation host for Zn ions: investigation by first-principles calculation and experiments. Chemistry of Materials, 30 (19), 6777–6787 (2018).

@article{esrl2018paper112,
  title = {Open-structured vanadium dioxide as an intercalation host for Zn ions: investigation by first-principles calculation and experiments},
  author = {JS Park and JH Jo and Y Aniskevich and A Bakavets and G Ragoisha and E Streltsov and J Kim and ST Myung},
  journal = {Chemistry of Materials},
  year = {2018},
  url = {https://doi.org/10.1021/acs.chemmater.8b02679},
  doi = {10.1021/acs.chemmater.8b02679}
}
Chemistry of Materials, 30 (11), 3683−3689 (2018)2018

Na3V(PO4)2: a new layered-type cathode material with high water stability and power capability for Na-ion batteries

J Kim*, G Yoon, H Kim, YU Park, K Kang

Sodium / Na
IF 9.9JCR Top 7.37%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 21/285 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY21/285 journals · Top 7.37%
  • CHEMISTRY, PHYSICAL15/147 journals · Top 10.20%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim*, G Yoon, H Kim, YU Park, K Kang. Na3V(PO4)2: a new layered-type cathode material with high water stability and power capability for Na-ion batteries. Chemistry of Materials, 30 (11), 3683−3689 (2018).

@article{esrl2018paper113,
  title = {Na3V(PO4)2: a new layered-type cathode material with high water stability and power capability for Na-ion batteries},
  author = {J Kim and G Yoon and H Kim and YU Park and K Kang},
  journal = {Chemistry of Materials},
  year = {2018},
  url = {https://doi.org/10.1021/acs.chemmater.8b00458},
  doi = {10.1021/acs.chemmater.8b00458}
}
Journal of the Korean Ceramic Society, 55 (1), 21-35 (2018)2018

Surface-Modified Spinel LiNi0.5Mn1.5O4 for Li-Ion Batteries

J Kim*, H Kim, K Kang

Lithium / LiInterfaces
Citation & BibTeX · 인용 정보

J Kim*, H Kim, K Kang. Surface-Modified Spinel LiNi0.5Mn1.5O4 for Li-Ion Batteries. Journal of the Korean Ceramic Society, 55 (1), 21-35 (2018).

@article{esrl2018paper114,
  title = {Surface-Modified Spinel LiNi0.5Mn1.5O4 for Li-Ion Batteries},
  author = {J Kim and H Kim and K Kang},
  journal = {Journal of the Korean Ceramic Society},
  year = {2018},
  url = {https://doi.org/10.4191/kcers.2018.55.1.08},
  doi = {10.4191/kcers.2018.55.1.08}
}
Journal of Power Sources, 374, 55-60 (2018)2018

Exceptional effect of glassy lithium fluorophosphate on Mn-rich olivine cathode material for high-performance Li ion batteries

J Kim*, H Kim, ST Myung, JK Yoo, S Lee

Lithium / Li
IF 6.9JCR Top 9.28%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 9/97 journals

  • ENERGY & FUELS9/97 journals · Top 9.28%
  • ELECTROCHEMISTRY3/28 journals · Top 10.71%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY34/285 journals · Top 11.93%
  • CHEMISTRY, PHYSICAL26/147 journals · Top 17.69%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim*, H Kim, ST Myung, JK Yoo, S Lee. Exceptional effect of glassy lithium fluorophosphate on Mn-rich olivine cathode material for high-performance Li ion batteries. Journal of Power Sources, 374, 55-60 (2018).

@article{esrl2018paper115,
  title = {Exceptional effect of glassy lithium fluorophosphate on Mn-rich olivine cathode material for high-performance Li ion batteries},
  author = {J Kim and H Kim and ST Myung and JK Yoo and S Lee},
  journal = {Journal of Power Sources},
  year = {2018},
  url = {https://doi.org/10.1016/j.jpowsour.2017.11.018},
  doi = {10.1016/j.jpowsour.2017.11.018}
}
Journal of Materials Chemistry A, 6, 17571-17578 (2018)2018

Unexpectedly high electrochemical performances of monoclinic Na2.4V2 (PO4)3/conductive polymer composite for Na-ion batteries

Y Lee, JK Yoo, Y Oh, H Park, W Ko, ST Myung, J Kim*

Sodium / Na
IF 9.9JCR Top 6.19%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 6/97 journals

  • ENERGY & FUELS6/97 journals · Top 6.19%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY20/285 journals · Top 7.02%
  • CHEMISTRY, PHYSICAL14/147 journals · Top 9.52%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y Lee, JK Yoo, Y Oh, H Park, W Ko, ST Myung, J Kim*. Unexpectedly high electrochemical performances of monoclinic Na2.4V2 (PO4)3/conductive polymer composite for Na-ion batteries. Journal of Materials Chemistry A, 6, 17571-17578 (2018).

@article{esrl2018paper116,
  title = {Unexpectedly high electrochemical performances of monoclinic Na2.4V2 (PO4)3/conductive polymer composite for Na-ion batteries},
  author = {Y Lee and JK Yoo and Y Oh and H Park and W Ko and ST Myung and J Kim},
  journal = {Journal of Materials Chemistry A},
  year = {2018},
  url = {https://doi.org/10.1039/c8ta06238b},
  doi = {10.1039/c8ta06238b}
}
Journal of Materials Chemistry A, 6, 17095-17100 (2018)2018

Na0. 97KFe(SO4)2: Iron-based sulfate cathode material with outstanding cyclability and power capability for Na-ion batteries

W Ko, T Park, H Park, Y Lee, KE Kee, J Kim*

Sodium / Na
IF 9.9JCR Top 6.19%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 6/97 journals

  • ENERGY & FUELS6/97 journals · Top 6.19%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY20/285 journals · Top 7.02%
  • CHEMISTRY, PHYSICAL14/147 journals · Top 9.52%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

W Ko, T Park, H Park, Y Lee, KE Kee, J Kim*. Na0. 97KFe(SO4)2: Iron-based sulfate cathode material with outstanding cyclability and power capability for Na-ion batteries. Journal of Materials Chemistry A, 6, 17095-17100 (2018).

@article{esrl2018paper117,
  title = {Na0. 97KFe(SO4)2: Iron-based sulfate cathode material with outstanding cyclability and power capability for Na-ion batteries},
  author = {W Ko and T Park and H Park and Y Lee and KE Kee and J Kim},
  journal = {Journal of Materials Chemistry A},
  year = {2018},
  url = {https://pubs.rsc.org/en/content/articlehtml/2018/ta/c8ta05854g}
}
Journal of Materials Chemistry A, 6 (34), 16627-16637 (2018)2018

Role of the Mn substituent in Na3V2(PO4)3 for high-rate sodium storage

JS Park, J Kim, JH Jo, ST Myung

Sodium / Na
IF 9.9JCR Top 6.19%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 6/97 journals

  • ENERGY & FUELS6/97 journals · Top 6.19%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY20/285 journals · Top 7.02%
  • CHEMISTRY, PHYSICAL14/147 journals · Top 9.52%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JS Park, J Kim, JH Jo, ST Myung. Role of the Mn substituent in Na3V2(PO4)3 for high-rate sodium storage. Journal of Materials Chemistry A, 6 (34), 16627-16637 (2018).

@article{esrl2018paper118,
  title = {Role of the Mn substituent in Na3V2(PO4)3 for high-rate sodium storage},
  author = {JS Park and J Kim and JH Jo and ST Myung},
  journal = {Journal of Materials Chemistry A},
  year = {2018},
  url = {https://pubs.rsc.org/en/content/articlehtml/2018/ta/c8ta06162a}
}
Energy & Environmental Science, 11, 2821-2827 (2018)2018

Development of P3-K0.69CrO2 as an ultra-high-performance cathode material for K-ion batteries

JY Hwang, J Kim†, TY Yu, ST Myung, YK Sun

Potassium
IF 30.1JCR Top 0.41%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENVIRONMENTAL SCIENCES · 1/242 journals

  • ENVIRONMENTAL SCIENCES1/242 journals · Top 0.41%
  • ENGINEERING, CHEMICAL1/137 journals · Top 0.73%
  • CHEMISTRY, MULTIDISCIPLINARY3/171 journals · Top 1.75%
  • ENERGY & FUELS2/97 journals · Top 2.06%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JY Hwang, J Kim†, TY Yu, ST Myung, YK Sun. Development of P3-K0.69CrO2 as an ultra-high-performance cathode material for K-ion batteries. Energy & Environmental Science, 11, 2821-2827 (2018).

@article{esrl2018paper119,
  title = {Development of P3-K0.69CrO2 as an ultra-high-performance cathode material for K-ion batteries},
  author = {JY Hwang and J Kim and TY Yu and ST Myung and YK Sun},
  journal = {Energy \& Environmental Science},
  year = {2018},
  url = {https://pubs.rsc.org/en/content/articlelanding/ee/2018/c8ee01365a#!divAbstract}
}
Journal of The Electrochemical Society, 165 (7), A1247-A1253 (2018)2018

Exceptional Effect of Benzene in Uniform Carbon Coating of SiOx Nanocomposite for High-Performance Li-Ion Batteries

HW Yang, N Kang, ST Myung, J Kim*, SJ Kim

Lithium / LiInterfaces
IF 3.7JCR Top 10.53%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, COATINGS & FILMS · 2/19 journals

  • MATERIALS SCIENCE, COATINGS & FILMS2/19 journals · Top 10.53%
  • ELECTROCHEMISTRY10/28 journals · Top 35.71%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

HW Yang, N Kang, ST Myung, J Kim*, SJ Kim. Exceptional Effect of Benzene in Uniform Carbon Coating of SiOx Nanocomposite for High-Performance Li-Ion Batteries. Journal of The Electrochemical Society, 165 (7), A1247-A1253 (2018).

@article{esrl2018paper120,
  title = {Exceptional Effect of Benzene in Uniform Carbon Coating of SiOx Nanocomposite for High-Performance Li-Ion Batteries},
  author = {HW Yang and N Kang and ST Myung and J Kim and SJ Kim},
  journal = {Journal of The Electrochemical Society},
  year = {2018},
  url = {https://doi.org/10.1149/2.0291807jes},
  doi = {10.1149/2.0291807jes}
}
Chemical Communications, 54, 5229-5232 (2018)2018

Spontaneous hybrids of graphene and carbon nanotube arrays at the liquid-gas interface for Li-ion battery anodes

H Kim, J Kim†, HS Jeong, H Kim, H Lee, JM Ha, SM Choi, TH Kim, YC Nah, TJ Shin, JN Bang, S Satija, JS Koo

Lithium / LiInterfaces
IF 6.3JCR Top 16.37%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 28/171 journals

  • CHEMISTRY, MULTIDISCIPLINARY28/171 journals · Top 16.37%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Kim, J Kim†, HS Jeong, H Kim, H Lee, JM Ha, SM Choi, TH Kim, YC Nah, TJ Shin, JN Bang, S Satija, JS Koo. Spontaneous hybrids of graphene and carbon nanotube arrays at the liquid-gas interface for Li-ion battery anodes. Chemical Communications, 54, 5229-5232 (2018).

@article{esrl2018paper121,
  title = {Spontaneous hybrids of graphene and carbon nanotube arrays at the liquid-gas interface for Li-ion battery anodes},
  author = {H Kim and J Kim and HS Jeong and H Kim and H Lee and JM Ha and SM Choi and TH Kim and YC Nah and TJ Shin and JN Bang and S Satija and JS Koo},
  journal = {Chemical Communications},
  year = {2018},
  url = {https://pubs.rsc.org/en/content/articlehtml/2018/cc/c8cc02148a}
}
Advanced Energy Materials, 8 (17), 1702646 (2018)2018

Conversion‐Based Cathode Materials for Rechargeable Sodium Batteries

J Kim, H Kim, K Kang

Sodium / Na
IF 21.9JCR Top 2.04%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 3/147 journals

  • CHEMISTRY, PHYSICAL3/147 journals · Top 2.04%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY9/285 journals · Top 3.16%
  • PHYSICS, APPLIED5/146 journals · Top 3.42%
  • ENERGY & FUELS4/97 journals · Top 4.12%
  • PHYSICS, CONDENSED MATTER4/67 journals · Top 5.97%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, H Kim, K Kang. Conversion‐Based Cathode Materials for Rechargeable Sodium Batteries. Advanced Energy Materials, 8 (17), 1702646 (2018).

@article{esrl2018paper122,
  title = {Conversion‐Based Cathode Materials for Rechargeable Sodium Batteries},
  author = {J Kim and H Kim and K Kang},
  journal = {Advanced Energy Materials},
  year = {2018},
  url = {https://doi.org/10.1002/aenm.201702646},
  doi = {10.1002/aenm.201702646}
}
Small, 14 (2), 1702816 (2018)2018

Extremely Small Pyrrhotite Fe7S8 Nanocrystals with Simultaneous Carbon‐Encapsulation for High‐Performance Na–Ion Batteries

MJ Choi, J Kim†*, JK Yoo, S Yim, J Jeon, YS Jung

Sodium / Na
IF 9.6JCR Top 6.85%2017 metricsDetails · 지표 정보

논문 게재연도(2018)의 전년도인 2017년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 10/146 journals

  • PHYSICS, APPLIED10/146 journals · Top 6.85%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY22/285 journals · Top 7.72%
  • CHEMISTRY, MULTIDISCIPLINARY17/171 journals · Top 9.94%
  • CHEMISTRY, PHYSICAL16/147 journals · Top 10.88%
  • NANOSCIENCE & NANOTECHNOLOGY11/92 journals · Top 11.96%
  • PHYSICS, CONDENSED MATTER9/67 journals · Top 13.43%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

MJ Choi, J Kim†*, JK Yoo, S Yim, J Jeon, YS Jung. Extremely Small Pyrrhotite Fe7S8 Nanocrystals with Simultaneous Carbon‐Encapsulation for High‐Performance Na–Ion Batteries. Small, 14 (2), 1702816 (2018).

@article{esrl2018paper123,
  title = {Extremely Small Pyrrhotite Fe7S8 Nanocrystals with Simultaneous Carbon‐Encapsulation for High‐Performance Na–Ion Batteries},
  author = {MJ Choi and J Kim and JK Yoo and S Yim and J Jeon and YS Jung},
  journal = {Small},
  year = {2018},
  url = {https://doi.org/10.1002/smll.201702816},
  doi = {10.1002/smll.201702816}
}
Journal of Materials Chemistry A, 5 (42), 22334-22340 (2017)2017

Development of a new alluaudite-based cathode material with high power and long cyclability for application in Na ion batteries in real-life

J Kim*, H Kim, S Lee, ST Myung

Sodium / Na
IF 8.9JCR Top 4.35%2016 metricsDetails · 지표 정보

논문 게재연도(2017)의 전년도인 2016년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 4/92 journals

  • ENERGY & FUELS4/92 journals · Top 4.35%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY19/275 journals · Top 6.91%
  • CHEMISTRY, PHYSICAL15/146 journals · Top 10.27%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim*, H Kim, S Lee, ST Myung. Development of a new alluaudite-based cathode material with high power and long cyclability for application in Na ion batteries in real-life. Journal of Materials Chemistry A, 5 (42), 22334-22340 (2017).

@article{esrl2017paper124,
  title = {Development of a new alluaudite-based cathode material with high power and long cyclability for application in Na ion batteries in real-life},
  author = {J Kim and H Kim and S Lee and ST Myung},
  journal = {Journal of Materials Chemistry A},
  year = {2017},
  url = {https://doi.org/10.1039/c7ta06693g},
  doi = {10.1039/c7ta06693g}
}
Chemistry of Materials, 29 (8), 3363-3366 (2017)2017

High Power Cathode Material Na4VO(PO4)2 with Open Framework for Na Ion Batteries

J Kim*, H Kim, S Lee

Sodium / Na
IF 9.5JCR Top 5.45%2016 metricsDetails · 지표 정보

논문 게재연도(2017)의 전년도인 2016년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/275 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/275 journals · Top 5.45%
  • CHEMISTRY, PHYSICAL12/146 journals · Top 8.22%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim*, H Kim, S Lee. High Power Cathode Material Na4VO(PO4)2 with Open Framework for Na Ion Batteries. Chemistry of Materials, 29 (8), 3363-3366 (2017).

@article{esrl2017paper125,
  title = {High Power Cathode Material Na4VO(PO4)2 with Open Framework for Na Ion Batteries},
  author = {J Kim and H Kim and S Lee},
  journal = {Chemistry of Materials},
  year = {2017},
  url = {https://doi.org/10.1021/acs.chemmater.6b04557},
  doi = {10.1021/acs.chemmater.6b04557}
}
Materials Research Bulletin, 96 (4), 524-532 (2017)2017

Activating layered LiNi0.5Co0.2Mn0.3O2 as a host for Mg intercalation in rechargeable Mg batteries

Y Cho, H Kim, K Ku, G Yoon, SK Jung, B Lee, J Kim, K Kang

Lithium / Li
IF 2.4JCR Top 34.91%2016 metricsDetails · 지표 정보

논문 게재연도(2017)의 전년도인 2016년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 96/275 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY96/275 journals · Top 34.91%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

Y Cho, H Kim, K Ku, G Yoon, SK Jung, B Lee, J Kim, K Kang. Activating layered LiNi0.5Co0.2Mn0.3O2 as a host for Mg intercalation in rechargeable Mg batteries. Materials Research Bulletin, 96 (4), 524-532 (2017).

@article{esrl2017paper126,
  title = {Activating layered LiNi0.5Co0.2Mn0.3O2 as a host for Mg intercalation in rechargeable Mg batteries},
  author = {Y Cho and H Kim and K Ku and G Yoon and SK Jung and B Lee and J Kim and K Kang},
  journal = {Materials Research Bulletin},
  year = {2017},
  url = {https://doi.org/10.1016/j.materresbull.2017.04.047},
  doi = {10.1016/j.materresbull.2017.04.047}
}
Chemistry of Materials, 29 (18), 7826-7832 (2017)2017

New 4V-Class and Zero-Strain Cathode Material for Na-Ion Batteries

J Kim, G Yoon, MH Lee, H Kim, S Lee, K Kang

Sodium / Na
IF 9.5JCR Top 5.45%2016 metricsDetails · 지표 정보

논문 게재연도(2017)의 전년도인 2016년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/275 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/275 journals · Top 5.45%
  • CHEMISTRY, PHYSICAL12/146 journals · Top 8.22%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, G Yoon, MH Lee, H Kim, S Lee, K Kang. New 4V-Class and Zero-Strain Cathode Material for Na-Ion Batteries. Chemistry of Materials, 29 (18), 7826-7832 (2017).

@article{esrl2017paper127,
  title = {New 4V-Class and Zero-Strain Cathode Material for Na-Ion Batteries},
  author = {J Kim and G Yoon and MH Lee and H Kim and S Lee and K Kang},
  journal = {Chemistry of Materials},
  year = {2017},
  url = {https://doi.org/10.1021/acs.chemmater.7b02477},
  doi = {10.1021/acs.chemmater.7b02477}
}
Nano Energy, 41, 687-696 (2017)2017

Tunnel-Type β-FeOOH Cathode Material for High Rate Sodium Storage via a New Conversion Reaction

MK Cho, JH Jo, JU Choi, J Kim, H Yashiro, S Yuan, L Shi, YK Sun, ST Myung

Sodium / Na
IF 12.3JCR Top 4.36%2016 metricsDetails · 지표 정보

논문 게재연도(2017)의 전년도인 2016년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/275 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/275 journals · Top 4.36%
  • PHYSICS, APPLIED8/148 journals · Top 5.41%
  • CHEMISTRY, PHYSICAL8/146 journals · Top 5.48%
  • NANOSCIENCE & NANOTECHNOLOGY6/87 journals · Top 6.90%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

MK Cho, JH Jo, JU Choi, J Kim, H Yashiro, S Yuan, L Shi, YK Sun, ST Myung. Tunnel-Type β-FeOOH Cathode Material for High Rate Sodium Storage via a New Conversion Reaction. Nano Energy, 41, 687-696 (2017).

@article{esrl2017paper128,
  title = {Tunnel-Type β-FeOOH Cathode Material for High Rate Sodium Storage via a New Conversion Reaction},
  author = {MK Cho and JH Jo and JU Choi and J Kim and H Yashiro and S Yuan and L Shi and YK Sun and ST Myung},
  journal = {Nano Energy},
  year = {2017},
  url = {https://doi.org/10.1016/j.nanoen.2017.10.022},
  doi = {10.1016/j.nanoen.2017.10.022}
}
ACS applied materials & interfaces, 9 (46), 40307-40316 (2017)2017

Effect of Mn in Li3V2–xMnx(PO4)3 as High Capacity Cathodes for Lithium Batteries

JS Park, J Kim, WB Park, YK Sun, ST Myung

Lithium / Li
IF 7.5JCR Top 8.00%2016 metricsDetails · 지표 정보

논문 게재연도(2017)의 전년도인 2016년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 22/275 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY22/275 journals · Top 8.00%
  • NANOSCIENCE & NANOTECHNOLOGY12/87 journals · Top 13.79%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JS Park, J Kim, WB Park, YK Sun, ST Myung. Effect of Mn in Li3V2–xMnx(PO4)3 as High Capacity Cathodes for Lithium Batteries. ACS applied materials & interfaces, 9 (46), 40307-40316 (2017).

@article{esrl2017paper129,
  title = {Effect of Mn in Li3V2–xMnx(PO4)3 as High Capacity Cathodes for Lithium Batteries},
  author = {JS Park and J Kim and WB Park and YK Sun and ST Myung},
  journal = {ACS applied materials \& interfaces},
  year = {2017},
  url = {https://doi.org/10.1021/acsami.7b13128},
  doi = {10.1021/acsami.7b13128}
}
Chemistry of Materials, 28 (20), 7241-7249 (2016)2016

Highly stable iron-and manganese-based cathodes for long-lasting sodium rechargeable batteries

H Kim, G Yoon, I Park, J Hong, KY Park, J Kim, KS Lee, NE Sung, S Lee, K Kang

Sodium / Na
IF 9.4JCR Top 5.54%2015 metricsDetails · 지표 정보

논문 게재연도(2016)의 전년도인 2015년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/271 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/271 journals · Top 5.54%
  • CHEMISTRY, PHYSICAL10/144 journals · Top 6.94%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Kim, G Yoon, I Park, J Hong, KY Park, J Kim, KS Lee, NE Sung, S Lee, K Kang. Highly stable iron-and manganese-based cathodes for long-lasting sodium rechargeable batteries. Chemistry of Materials, 28 (20), 7241-7249 (2016).

@article{esrl2016paper130,
  title = {Highly stable iron-and manganese-based cathodes for long-lasting sodium rechargeable batteries},
  author = {H Kim and G Yoon and I Park and J Hong and KY Park and J Kim and KS Lee and NE Sung and S Lee and K Kang},
  journal = {Chemistry of Materials},
  year = {2016},
  url = {https://doi.org/10.1021/acs.chemmater.6b01766},
  doi = {10.1021/acs.chemmater.6b01766}
}
Chemistry of Materials, 28 (19), 6894-6899 (2016)2016

Redesign of Li2MP2O7 (M= Fe or Mn) by Tuning the Li Diffusion in Rechargeable Battery Electrodes

J Kim, B Lee, H Kim, H Kim, K Kang

Lithium / Li
IF 9.4JCR Top 5.54%2015 metricsDetails · 지표 정보

논문 게재연도(2016)의 전년도인 2015년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 15/271 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY15/271 journals · Top 5.54%
  • CHEMISTRY, PHYSICAL10/144 journals · Top 6.94%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, B Lee, H Kim, H Kim, K Kang. Redesign of Li2MP2O7 (M= Fe or Mn) by Tuning the Li Diffusion in Rechargeable Battery Electrodes. Chemistry of Materials, 28 (19), 6894-6899 (2016).

@article{esrl2016paper131,
  title = {Redesign of Li2MP2O7 (M= Fe or Mn) by Tuning the Li Diffusion in Rechargeable Battery Electrodes},
  author = {J Kim and B Lee and H Kim and H Kim and K Kang},
  journal = {Chemistry of Materials},
  year = {2016},
  url = {https://doi.org/10.1021/acs.chemmater.6b02198},
  doi = {10.1021/acs.chemmater.6b02198}
}
Advanced Energy Materials, 6 (6), 1502147 (2016)2016

Tailoring a New 4V‐Class Cathode Material for Na‐Ion Batteries

J Kim, I Park, H Kim, KY Park, YU Park, K Kang

Sodium / Na
IF 15.2JCR Top 2.08%2015 metricsDetails · 지표 정보

논문 게재연도(2016)의 전년도인 2015년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 3/144 journals

  • CHEMISTRY, PHYSICAL3/144 journals · Top 2.08%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY7/271 journals · Top 2.58%
  • ENERGY & FUELS3/88 journals · Top 3.41%
  • PHYSICS, APPLIED5/145 journals · Top 3.45%
  • PHYSICS, CONDENSED MATTER5/67 journals · Top 7.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, I Park, H Kim, KY Park, YU Park, K Kang. Tailoring a New 4V‐Class Cathode Material for Na‐Ion Batteries. Advanced Energy Materials, 6 (6), 1502147 (2016).

@article{esrl2016paper132,
  title = {Tailoring a New 4V‐Class Cathode Material for Na‐Ion Batteries},
  author = {J Kim and I Park and H Kim and KY Park and YU Park and K Kang},
  journal = {Advanced Energy Materials},
  year = {2016},
  url = {https://doi.org/10.1002/aenm.201502147},
  doi = {10.1002/aenm.201502147}
}
CrystEngComm, 18 (39), 7463-7470 (2016)2016

Thermal structural stability of a multi-component olivine electrode for lithium ion batteries

KY Park, H Kim, S Lee, J Kim, J Hong, HD Lim, I Park, K Kang

Lithium / Li
IF 3.8JCR Top 19.23%2015 metricsDetails · 지표 정보

논문 게재연도(2016)의 전년도인 2015년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CRYSTALLOGRAPHY · 5/26 journals

  • CRYSTALLOGRAPHY5/26 journals · Top 19.23%
  • CHEMISTRY, MULTIDISCIPLINARY38/163 journals · Top 23.31%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

KY Park, H Kim, S Lee, J Kim, J Hong, HD Lim, I Park, K Kang. Thermal structural stability of a multi-component olivine electrode for lithium ion batteries. CrystEngComm, 18 (39), 7463-7470 (2016).

@article{esrl2016paper133,
  title = {Thermal structural stability of a multi-component olivine electrode for lithium ion batteries},
  author = {KY Park and H Kim and S Lee and J Kim and J Hong and HD Lim and I Park and K Kang},
  journal = {CrystEngComm},
  year = {2016},
  url = {https://doi.org/10.1039/c6ce00944a},
  doi = {10.1039/c6ce00944a}
}
Energy & Environmental Science, 8 (11), 3325-3335 (2015)2015

Anomalous Jahn–Teller behavior in a manganese-based mixed-phosphate cathode for sodium ion batteries

H Kim, G Yoon, I Park, KY Park, B Lee, J Kim, YU Park, SK Jung, HD Lim, DC Ahn, S Lee, K Kang

Sodium / Na
IF 20.5JCR Top 0.45%2014 metricsDetails · 지표 정보

논문 게재연도(2015)의 전년도인 2014년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENVIRONMENTAL SCIENCES · 1/223 journals

  • ENVIRONMENTAL SCIENCES1/223 journals · Top 0.45%
  • ENGINEERING, CHEMICAL1/135 journals · Top 0.74%
  • ENERGY & FUELS1/89 journals · Top 1.12%
  • CHEMISTRY, MULTIDISCIPLINARY5/157 journals · Top 3.18%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Kim, G Yoon, I Park, KY Park, B Lee, J Kim, YU Park, SK Jung, HD Lim, DC Ahn, S Lee, K Kang. Anomalous Jahn–Teller behavior in a manganese-based mixed-phosphate cathode for sodium ion batteries. Energy & Environmental Science, 8 (11), 3325-3335 (2015).

@article{esrl2015paper134,
  title = {Anomalous Jahn–Teller behavior in a manganese-based mixed-phosphate cathode for sodium ion batteries},
  author = {H Kim and G Yoon and I Park and KY Park and B Lee and J Kim and YU Park and SK Jung and HD Lim and DC Ahn and S Lee and K Kang},
  journal = {Energy \& Environmental Science},
  year = {2015},
  url = {https://doi.org/10.1039/c5ee01876e},
  doi = {10.1039/c5ee01876e}
}
Energy & Environmental Science, 8 (2), 540-545 (2015)2015

Unexpected discovery of low-cost maricite NaFePO4 as a high-performance electrode for Na-ion batteries

J Kim, DH Seo, H Kim, I Park, JK Yoo, SK Jung, YU Park, G William III, K Kang

Sodium / Na
IF 20.5JCR Top 0.45%2014 metricsDetails · 지표 정보

논문 게재연도(2015)의 전년도인 2014년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENVIRONMENTAL SCIENCES · 1/223 journals

  • ENVIRONMENTAL SCIENCES1/223 journals · Top 0.45%
  • ENGINEERING, CHEMICAL1/135 journals · Top 0.74%
  • ENERGY & FUELS1/89 journals · Top 1.12%
  • CHEMISTRY, MULTIDISCIPLINARY5/157 journals · Top 3.18%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, DH Seo, H Kim, I Park, JK Yoo, SK Jung, YU Park, G William III, K Kang. Unexpected discovery of low-cost maricite NaFePO4 as a high-performance electrode for Na-ion batteries. Energy & Environmental Science, 8 (2), 540-545 (2015).

@article{esrl2015paper135,
  title = {Unexpected discovery of low-cost maricite NaFePO4 as a high-performance electrode for Na-ion batteries},
  author = {J Kim and DH Seo and H Kim and I Park and JK Yoo and SK Jung and YU Park and G William III and K Kang},
  journal = {Energy \& Environmental Science},
  year = {2015},
  url = {https://doi.org/10.1039/c4ee03215b},
  doi = {10.1039/c4ee03215b}
}
Advanced Energy Materials, 4 (16), 1400622 (2014)2014

Extremely High Yield Conversion from Low‐Cost Sand to High‐Capacity Si Electrodes for Li‐Ion Batteries

JK Yoo†, J Kim†, MJ Choi, YU Park, J Hong, KM Baek, K Kang, YS Jung

Lithium / Li
IF 14.4JCR Top 2.79%2013 metricsDetails · 지표 정보

논문 게재연도(2014)의 전년도인 2013년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 7/251 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY7/251 journals · Top 2.79%
  • PHYSICS, APPLIED4/136 journals · Top 2.94%
  • ENERGY & FUELS3/83 journals · Top 3.61%
  • CHEMISTRY, PHYSICAL5/136 journals · Top 3.68%
  • PHYSICS, CONDENSED MATTER5/67 journals · Top 7.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JK Yoo†, J Kim†, MJ Choi, YU Park, J Hong, KM Baek, K Kang, YS Jung. Extremely High Yield Conversion from Low‐Cost Sand to High‐Capacity Si Electrodes for Li‐Ion Batteries. Advanced Energy Materials, 4 (16), 1400622 (2014).

@article{esrl2014paper136,
  title = {Extremely High Yield Conversion from Low‐Cost Sand to High‐Capacity Si Electrodes for Li‐Ion Batteries},
  author = {JK Yoo and J Kim and MJ Choi and YU Park and J Hong and KM Baek and K Kang and YS Jung},
  journal = {Advanced Energy Materials},
  year = {2014},
  url = {https://doi.org/10.1002/aenm.201400622},
  doi = {10.1002/aenm.201400622}
}
Chemistry of Materials, 26 (18), 5345-5351 (2014)2014

Anti-site reordering in LiFePO4: defect annihilation on charge carrier injection

KY Park, I Park, H Kim, H Lim, J Hong, J Kim, K Kang

Lithium / Li
IF 8.5JCR Top 6.37%2013 metricsDetails · 지표 정보

논문 게재연도(2014)의 전년도인 2013년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 16/251 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY16/251 journals · Top 6.37%
  • CHEMISTRY, PHYSICAL13/136 journals · Top 9.56%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

KY Park, I Park, H Kim, H Lim, J Hong, J Kim, K Kang. Anti-site reordering in LiFePO4: defect annihilation on charge carrier injection. Chemistry of Materials, 26 (18), 5345-5351 (2014).

@article{esrl2014paper137,
  title = {Anti-site reordering in LiFePO4: defect annihilation on charge carrier injection},
  author = {KY Park and I Park and H Kim and H Lim and J Hong and J Kim and K Kang},
  journal = {Chemistry of Materials},
  year = {2014},
  url = {https://doi.org/10.1021/cm502432q},
  doi = {10.1021/cm502432q}
}
Advanced Functional Materials, 24 (29), 4603-4614 (2014)2014

A Family of High‐Performance Cathode Materials for Na‐ion Batteries, Na3(VO1−xPO4)2F1+2x (0≤ x≤ 1): Combined First‐Principles and Experimental Study

YU Park, DH Seo, H Kim, J Kim, S Lee, B Kim, K Kang

Sodium / NaModeling
IF 10.4JCR Top 4.78%2013 metricsDetails · 지표 정보

논문 게재연도(2014)의 전년도인 2013년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/251 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/251 journals · Top 4.78%
  • PHYSICS, APPLIED7/136 journals · Top 5.15%
  • CHEMISTRY, PHYSICAL9/136 journals · Top 6.62%
  • CHEMISTRY, MULTIDISCIPLINARY12/148 journals · Top 8.11%
  • NANOSCIENCE & NANOTECHNOLOGY6/73 journals · Top 8.22%
  • PHYSICS, CONDENSED MATTER8/67 journals · Top 11.94%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YU Park, DH Seo, H Kim, J Kim, S Lee, B Kim, K Kang. A Family of High‐Performance Cathode Materials for Na‐ion Batteries, Na3(VO1−xPO4)2F1+2x (0≤ x≤ 1): Combined First‐Principles and Experimental Study. Advanced Functional Materials, 24 (29), 4603-4614 (2014).

@article{esrl2014paper138,
  title = {A Family of High‐Performance Cathode Materials for Na‐ion Batteries, Na3(VO1−xPO4)2F1+2x (0≤ x≤ 1): Combined First‐Principles and Experimental Study},
  author = {YU Park and DH Seo and H Kim and J Kim and S Lee and B Kim and K Kang},
  journal = {Advanced Functional Materials},
  year = {2014},
  url = {https://doi.org/10.1002/adfm.201400561},
  doi = {10.1002/adfm.201400561}
}
Journal of the American Chemical Society, 136 (11), 4201-4211 (2014)2014

A New Water Oxidation Catalyst: Lithium Manganese Pyrophosphate with Tunable Mn Valency

JM Park, HA Kim, KS Jin, BJ Lee, YS Park, HS Kim, IC Park, KD Yang, HY Jeong, J Kim, KT Hong, HW Jang, K Kang*, KT Nam*

Lithium / Li
IF 11.4JCR Top 6.76%2013 metricsDetails · 지표 정보

논문 게재연도(2014)의 전년도인 2013년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 10/148 journals

  • CHEMISTRY, MULTIDISCIPLINARY10/148 journals · Top 6.76%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JM Park, HA Kim, KS Jin, BJ Lee, YS Park, HS Kim, IC Park, KD Yang, HY Jeong, J Kim, KT Hong, HW Jang, K Kang*, KT Nam*. A New Water Oxidation Catalyst: Lithium Manganese Pyrophosphate with Tunable Mn Valency. Journal of the American Chemical Society, 136 (11), 4201-4211 (2014).

@article{esrl2014paper139,
  title = {A New Water Oxidation Catalyst: Lithium Manganese Pyrophosphate with Tunable Mn Valency},
  author = {JM Park and HA Kim and KS Jin and BJ Lee and YS Park and HS Kim and IC Park and KD Yang and HY Jeong and J Kim and KT Hong and HW Jang and K Kang and KT Nam},
  journal = {Journal of the American Chemical Society},
  year = {2014},
  url = {https://doi.org/10.1021/ja410223j},
  doi = {10.1021/ja410223j}
}
Journal of Alloys and Compounds, 585, 434-441 (2014)2014

Iron titanium phosphates as high-specific-capacity electrode materials for lithium ion batteries

R Essehli, B El Bali, A Faik, M Naji, S Benmokhtar, YR Zhong, LW Su, Z Zhou, J Kim, K Kang, M Dusek

Lithium / Li
IF 2.7JCR Top 6.67%2013 metricsDetails · 지표 정보

논문 게재연도(2014)의 전년도인 2013년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
METALLURGY & METALLURGICAL ENGINEERING · 5/75 journals

  • METALLURGY & METALLURGICAL ENGINEERING5/75 journals · Top 6.67%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY49/251 journals · Top 19.52%
  • CHEMISTRY, PHYSICAL53/136 journals · Top 38.97%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

R Essehli, B El Bali, A Faik, M Naji, S Benmokhtar, YR Zhong, LW Su, Z Zhou, J Kim, K Kang, M Dusek. Iron titanium phosphates as high-specific-capacity electrode materials for lithium ion batteries. Journal of Alloys and Compounds, 585, 434-441 (2014).

@article{esrl2014paper140,
  title = {Iron titanium phosphates as high-specific-capacity electrode materials for lithium ion batteries},
  author = {R Essehli and B El Bali and A Faik and M Naji and S Benmokhtar and YR Zhong and LW Su and Z Zhou and J Kim and K Kang and M Dusek},
  journal = {Journal of Alloys and Compounds},
  year = {2014},
  url = {https://doi.org/10.1016/j.jallcom.2013.09.093},
  doi = {10.1016/j.jallcom.2013.09.093}
}
Journal of Materials Chemistry A, 2 (23), 8632-8636 (2014)2014

Alluaudite LiMnPO4: a new Mn-based positive electrode for Li rechargeable batteries

J Kim, H Kim, KY Park, YU Park, S Lee, HS Kwon, HI Yoo, K Kang

Lithium / Li
Citation & BibTeX · 인용 정보

J Kim, H Kim, KY Park, YU Park, S Lee, HS Kwon, HI Yoo, K Kang. Alluaudite LiMnPO4: a new Mn-based positive electrode for Li rechargeable batteries. Journal of Materials Chemistry A, 2 (23), 8632-8636 (2014).

@article{esrl2014paper141,
  title = {Alluaudite LiMnPO4: a new Mn-based positive electrode for Li rechargeable batteries},
  author = {J Kim and H Kim and KY Park and YU Park and S Lee and HS Kwon and HI Yoo and K Kang},
  journal = {Journal of Materials Chemistry A},
  year = {2014},
  url = {https://doi.org/10.1039/c4ta00955j},
  doi = {10.1039/c4ta00955j}
}
Nanotechnology, 24 (42), 424008 (2013)2013

Porous silicon nanowires for lithium rechargeable batteries

JK Yoo, J Kim, H Lee, J Choi, MJ Choi, DM Sim, YS Jung, K Kang

Lithium / Li
IF 3.8JCR Top 14.06%2012 metricsDetails · 지표 정보

논문 게재연도(2013)의 전년도인 2012년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 18/128 journals

  • PHYSICS, APPLIED18/128 journals · Top 14.06%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY34/241 journals · Top 14.11%
  • NANOSCIENCE & NANOTECHNOLOGY20/69 journals · Top 28.99%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JK Yoo, J Kim, H Lee, J Choi, MJ Choi, DM Sim, YS Jung, K Kang. Porous silicon nanowires for lithium rechargeable batteries. Nanotechnology, 24 (42), 424008 (2013).

@article{esrl2013paper142,
  title = {Porous silicon nanowires for lithium rechargeable batteries},
  author = {JK Yoo and J Kim and H Lee and J Choi and MJ Choi and DM Sim and YS Jung and K Kang},
  journal = {Nanotechnology},
  year = {2013},
  url = {https://doi.org/10.1088/0957-4484/24/42/424008},
  doi = {10.1088/0957-4484/24/42/424008}
}
Journal of the American Chemical Society, 135 (37), 13870-13878 (2013)2013

A new high-energy cathode for a Na-ion battery with ultrahigh stability

YU Park, DH Seo, HS Kwon, B Kim, J Kim, H Kim, I Kim, HI Yoo, K Kang

Sodium / Na
IF 10.7JCR Top 7.24%2012 metricsDetails · 지표 정보

논문 게재연도(2013)의 전년도인 2012년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 11/152 journals

  • CHEMISTRY, MULTIDISCIPLINARY11/152 journals · Top 7.24%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YU Park, DH Seo, HS Kwon, B Kim, J Kim, H Kim, I Kim, HI Yoo, K Kang. A new high-energy cathode for a Na-ion battery with ultrahigh stability. Journal of the American Chemical Society, 135 (37), 13870-13878 (2013).

@article{esrl2013paper143,
  title = {A new high-energy cathode for a Na-ion battery with ultrahigh stability},
  author = {YU Park and DH Seo and HS Kwon and B Kim and J Kim and H Kim and I Kim and HI Yoo and K Kang},
  journal = {Journal of the American Chemical Society},
  year = {2013},
  url = {https://doi.org/10.1021/ja406016j},
  doi = {10.1021/ja406016j}
}
Chemistry of Materials, 25 (18), 3614-3622 (2013)2013

Understanding the Electrochemical Mechanism of the New Iron-Based Mixed-Phosphate Na4Fe3(PO4)2(P2O7) in a Na Rechargeable Battery

H Kim, I Park, S Lee, H Kim, KY Park, YU Park, H Kim, J Kim, HD Lim, WS Yoon, K Kang

Sodium / Na
IF 8.2JCR Top 5.39%2012 metricsDetails · 지표 정보

논문 게재연도(2013)의 전년도인 2012년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 13/241 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY13/241 journals · Top 5.39%
  • CHEMISTRY, PHYSICAL9/135 journals · Top 6.67%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Kim, I Park, S Lee, H Kim, KY Park, YU Park, H Kim, J Kim, HD Lim, WS Yoon, K Kang. Understanding the Electrochemical Mechanism of the New Iron-Based Mixed-Phosphate Na4Fe3(PO4)2(P2O7) in a Na Rechargeable Battery. Chemistry of Materials, 25 (18), 3614-3622 (2013).

@article{esrl2013paper144,
  title = {Understanding the Electrochemical Mechanism of the New Iron-Based Mixed-Phosphate Na4Fe3(PO4)2(P2O7) in a Na Rechargeable Battery},
  author = {H Kim and I Park and S Lee and H Kim and KY Park and YU Park and H Kim and J Kim and HD Lim and WS Yoon and K Kang},
  journal = {Chemistry of Materials},
  year = {2013},
  url = {https://doi.org/10.1021/cm4013816},
  doi = {10.1021/cm4013816}
}
Advanced Energy Materials, 3 (8), 1004-1007 (2013)2013

Li3V2(PO4)3/Conducting Polymer as a High Power 4 V‐Class Lithium Battery Electrode

J Kim, JK Yoo, YS Jung, K Kang

Lithium / Li
IF 10.0JCR Top 3.70%2012 metricsDetails · 지표 정보

논문 게재연도(2013)의 전년도인 2012년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENERGY & FUELS · 3/81 journals

  • ENERGY & FUELS3/81 journals · Top 3.70%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY10/241 journals · Top 4.15%
  • PHYSICS, APPLIED6/128 journals · Top 4.69%
  • CHEMISTRY, PHYSICAL7/135 journals · Top 5.19%
  • PHYSICS, CONDENSED MATTER7/68 journals · Top 10.29%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, JK Yoo, YS Jung, K Kang. Li3V2(PO4)3/Conducting Polymer as a High Power 4 V‐Class Lithium Battery Electrode. Advanced Energy Materials, 3 (8), 1004-1007 (2013).

@article{esrl2013paper145,
  title = {Li3V2(PO4)3/Conducting Polymer as a High Power 4 V‐Class Lithium Battery Electrode},
  author = {J Kim and JK Yoo and YS Jung and K Kang},
  journal = {Advanced Energy Materials},
  year = {2013},
  url = {https://doi.org/10.1002/aenm.201300205},
  doi = {10.1002/aenm.201300205}
}
Journal of The Electrochemical Society, 160 (3), A444-A448 (2013)2013

Factors that Affect the Phase Behavior of Multi-Component Olivine (LiFexMnyCo1-x-yPO4; 0 < x, y< 1) in Lithium Rechargeable Batteries: One-Phase Reaction vs. Two-Phase Reaction

KY Park, J Hong, J Kim, YU Park, H Kim, DH Seo, SW Kim, JW Choi, K Kang

Lithium / Li
IF 2.6JCR Top 5.88%2012 metricsDetails · 지표 정보

논문 게재연도(2013)의 전년도인 2012년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, COATINGS & FILMS · 1/17 journals

  • MATERIALS SCIENCE, COATINGS & FILMS1/17 journals · Top 5.88%
  • ELECTROCHEMISTRY11/26 journals · Top 42.31%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

KY Park, J Hong, J Kim, YU Park, H Kim, DH Seo, SW Kim, JW Choi, K Kang. Factors that Affect the Phase Behavior of Multi-Component Olivine (LiFexMnyCo1-x-yPO4; 0 < x, y< 1) in Lithium Rechargeable Batteries: One-Phase Reaction vs. Two-Phase Reaction. Journal of The Electrochemical Society, 160 (3), A444-A448 (2013).

@article{esrl2013paper146,
  title = {Factors that Affect the Phase Behavior of Multi-Component Olivine (LiFexMnyCo1-x-yPO4; 0 < x, y< 1) in Lithium Rechargeable Batteries: One-Phase Reaction vs. Two-Phase Reaction},
  author = {KY Park and J Hong and J Kim and YU Park and H Kim and DH Seo and SW Kim and JW Choi and K Kang},
  journal = {Journal of The Electrochemical Society},
  year = {2013},
  url = {https://doi.org/10.1149/2.036303jes},
  doi = {10.1149/2.036303jes}
}
Energy & Environmental Science, 6, 830-834 (2013)2013

LiFePO4 with Alluaudite crystal structure for Lithium ion Batteries

J Kim, H Kim, I Park, YU Park, JK Yoo, KY Park, S Lee, K Kang

Lithium / Li
IF 11.7JCR Top 0.95%2012 metricsDetails · 지표 정보

논문 게재연도(2013)의 전년도인 2012년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ENVIRONMENTAL SCIENCES · 2/210 journals

  • ENVIRONMENTAL SCIENCES2/210 journals · Top 0.95%
  • ENGINEERING, CHEMICAL2/133 journals · Top 1.50%
  • ENERGY & FUELS2/81 journals · Top 2.47%
  • CHEMISTRY, MULTIDISCIPLINARY10/152 journals · Top 6.58%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, H Kim, I Park, YU Park, JK Yoo, KY Park, S Lee, K Kang. LiFePO4 with Alluaudite crystal structure for Lithium ion Batteries. Energy & Environmental Science, 6, 830-834 (2013).

@article{esrl2013paper147,
  title = {LiFePO4 with Alluaudite crystal structure for Lithium ion Batteries},
  author = {J Kim and H Kim and I Park and YU Park and JK Yoo and KY Park and S Lee and K Kang},
  journal = {Energy \& Environmental Science},
  year = {2013},
  url = {https://doi.org/10.1039/c3ee24393a},
  doi = {10.1039/c3ee24393a}
}
Advanced Materials, 24, 5452-5456 (2012)2012

Scalable fabrication of silicon nanotubes and their application to energy storage

JK Yoo, J Kim†, YS Jung, K Kang

IF 13.9JCR Top 2.24%2011 metricsDetails · 지표 정보

논문 게재연도(2012)의 전년도인 2011년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 3/134 journals

  • CHEMISTRY, PHYSICAL3/134 journals · Top 2.24%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY6/232 journals · Top 2.59%
  • PHYSICS, APPLIED4/125 journals · Top 3.20%
  • CHEMISTRY, MULTIDISCIPLINARY6/154 journals · Top 3.90%
  • PHYSICS, CONDENSED MATTER3/69 journals · Top 4.35%
  • NANOSCIENCE & NANOTECHNOLOGY3/66 journals · Top 4.55%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

JK Yoo, J Kim†, YS Jung, K Kang. Scalable fabrication of silicon nanotubes and their application to energy storage. Advanced Materials, 24, 5452-5456 (2012).

@article{esrl2012paper148,
  title = {Scalable fabrication of silicon nanotubes and their application to energy storage},
  author = {JK Yoo and J Kim and YS Jung and K Kang},
  journal = {Advanced Materials},
  year = {2012},
  url = {https://doi.org/10.1002/adma.201201601},
  doi = {10.1002/adma.201201601}
}
Journal of Materials Chemistry, 22 (38), 20535-20541 (2012)2012

A combined first principles and experimental study on Na3V2(PO4)2F3 for rechargeable Na batteries

RA Shakoor, DH Seo, H Kim, YU Park, J Kim, SW Kim, H Gwon, S Lee, K Kang

Sodium / NaModeling
IF 6.0JCR Top 7.33%2011 metricsDetails · 지표 정보

논문 게재연도(2012)의 전년도인 2011년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/232 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/232 journals · Top 7.33%
  • CHEMISTRY, PHYSICAL18/134 journals · Top 13.43%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

RA Shakoor, DH Seo, H Kim, YU Park, J Kim, SW Kim, H Gwon, S Lee, K Kang. A combined first principles and experimental study on Na3V2(PO4)2F3 for rechargeable Na batteries. Journal of Materials Chemistry, 22 (38), 20535-20541 (2012).

@article{esrl2012paper149,
  title = {A combined first principles and experimental study on Na3V2(PO4)2F3 for rechargeable Na batteries},
  author = {RA Shakoor and DH Seo and H Kim and YU Park and J Kim and SW Kim and H Gwon and S Lee and K Kang},
  journal = {Journal of Materials Chemistry},
  year = {2012},
  url = {https://doi.org/10.1039/c2jm33862a},
  doi = {10.1039/c2jm33862a}
}
Journal of Materials Chemistry, 22 (24), 11964-11970 (2012)2012

Thermal stability of Fe–Mn binary olivine cathodes for Li rechargeable batteries

J Kim, KY Park, I Park, JK Yoo, J Hong, K Kang

Lithium / Li
IF 6.0JCR Top 7.33%2011 metricsDetails · 지표 정보

논문 게재연도(2012)의 전년도인 2011년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 17/232 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY17/232 journals · Top 7.33%
  • CHEMISTRY, PHYSICAL18/134 journals · Top 13.43%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, KY Park, I Park, JK Yoo, J Hong, K Kang. Thermal stability of Fe–Mn binary olivine cathodes for Li rechargeable batteries. Journal of Materials Chemistry, 22 (24), 11964-11970 (2012).

@article{esrl2012paper150,
  title = {Thermal stability of Fe–Mn binary olivine cathodes for Li rechargeable batteries},
  author = {J Kim and KY Park and I Park and JK Yoo and J Hong and K Kang},
  journal = {Journal of Materials Chemistry},
  year = {2012},
  url = {https://doi.org/10.1039/c2jm30733b},
  doi = {10.1039/c2jm30733b}
}
Journal of The Electrochemical Society, 159 (1), A55-A59 (2011)2011

The Effect of Particle Size on Phase Stability of the Delithiated LixMnPO4

J Kim, KY Park, I Park, JK Yoo, DH Seo, SW Kim, K Kang

Lithium / Li
IF 2.4JCR Top 5.56%2010 metricsDetails · 지표 정보

논문 게재연도(2011)의 전년도인 2010년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, COATINGS & FILMS · 1/18 journals

  • MATERIALS SCIENCE, COATINGS & FILMS1/18 journals · Top 5.56%
  • ELECTROCHEMISTRY12/26 journals · Top 46.15%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, KY Park, I Park, JK Yoo, DH Seo, SW Kim, K Kang. The Effect of Particle Size on Phase Stability of the Delithiated LixMnPO4. Journal of The Electrochemical Society, 159 (1), A55-A59 (2011).

@article{esrl2011paper151,
  title = {The Effect of Particle Size on Phase Stability of the Delithiated LixMnPO4},
  author = {J Kim and KY Park and I Park and JK Yoo and DH Seo and SW Kim and K Kang},
  journal = {Journal of The Electrochemical Society},
  year = {2011},
  url = {https://doi.org/10.1149/2.065201jes},
  doi = {10.1149/2.065201jes}
}
Carbon, 49 (1), 326-332 (2011)2011

Highly reversible Co3O4/graphene hybrid anode for lithium rechargeable batteries

H Kim, DH Seo, SW Kim, J Kim, K Kang

Lithium / Li
IF 4.9JCR Top 8.44%2010 metricsDetails · 지표 정보

논문 게재연도(2011)의 전년도인 2010년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 19/225 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY19/225 journals · Top 8.44%
  • CHEMISTRY, PHYSICAL22/127 journals · Top 17.32%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Kim, DH Seo, SW Kim, J Kim, K Kang. Highly reversible Co3O4/graphene hybrid anode for lithium rechargeable batteries. Carbon, 49 (1), 326-332 (2011).

@article{esrl2011paper152,
  title = {Highly reversible Co3O4/graphene hybrid anode for lithium rechargeable batteries},
  author = {H Kim and DH Seo and SW Kim and J Kim and K Kang},
  journal = {Carbon},
  year = {2011},
  url = {https://www.sciencedirect.com/science/article/pii/S0008622310006792}
}
Journal of The Electrochemical Society, 158 (3), A250-A254 (2011)2011

Mg and Fe Co-doped Mn based olivine cathode material for high power capability

J Kim, YU Park, DH Seo, J Kim, SW Kim, K Kang

IF 2.4JCR Top 5.56%2010 metricsDetails · 지표 정보

논문 게재연도(2011)의 전년도인 2010년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, COATINGS & FILMS · 1/18 journals

  • MATERIALS SCIENCE, COATINGS & FILMS1/18 journals · Top 5.56%
  • ELECTROCHEMISTRY12/26 journals · Top 46.15%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, YU Park, DH Seo, J Kim, SW Kim, K Kang. Mg and Fe Co-doped Mn based olivine cathode material for high power capability. Journal of The Electrochemical Society, 158 (3), A250-A254 (2011).

@article{esrl2011paper153,
  title = {Mg and Fe Co-doped Mn based olivine cathode material for high power capability},
  author = {J Kim and YU Park and DH Seo and J Kim and SW Kim and K Kang},
  journal = {Journal of The Electrochemical Society},
  year = {2011},
  url = {https://doi.org/10.1149/1.3524260},
  doi = {10.1149/1.3524260}
}
Electronic Materials Letters, 7 (2), 105-108 (2011)2011

Preparation and electrochemical characterization of doped spinel LiMn1.88Ge 0.1 Li0.02O4 cathode material

SW Kim, VG Kumar, DH Seo, YU Park, J Kim, H Kim, J Kim, J Hong, K Kang

Lithium / Li
IF 1.6JCR Top 36.44%2010 metricsDetails · 지표 정보

논문 게재연도(2011)의 전년도인 2010년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 82/225 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY82/225 journals · Top 36.44%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

SW Kim, VG Kumar, DH Seo, YU Park, J Kim, H Kim, J Kim, J Hong, K Kang. Preparation and electrochemical characterization of doped spinel LiMn1.88Ge 0.1 Li0.02O4 cathode material. Electronic Materials Letters, 7 (2), 105-108 (2011).

@article{esrl2011paper154,
  title = {Preparation and electrochemical characterization of doped spinel LiMn1.88Ge 0.1 Li0.02O4 cathode material},
  author = {SW Kim and VG Kumar and DH Seo and YU Park and J Kim and H Kim and J Kim and J Hong and K Kang},
  journal = {Electronic Materials Letters},
  year = {2011},
  url = {https://doi.org/10.1007/s13391-011-0603-z},
  doi = {10.1007/s13391-011-0603-z}
}
Chemistry of Materials, 23 (17), 3930-3937 (2011)2011

Neutron and X-ray Diffraction Study of Pyrophosphate-Based Li2–xMP2O7 (M= Fe, Co) for Lithium Rechargeable Battery Electrodes

H Kim, S Lee, YU Park, H Kim, J Kim, S Jeon, K Kang

Lithium / Li
IF 6.4JCR Top 5.33%2010 metricsDetails · 지표 정보

논문 게재연도(2011)의 전년도인 2010년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/225 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/225 journals · Top 5.33%
  • CHEMISTRY, PHYSICAL15/127 journals · Top 11.81%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Kim, S Lee, YU Park, H Kim, J Kim, S Jeon, K Kang. Neutron and X-ray Diffraction Study of Pyrophosphate-Based Li2–xMP2O7 (M= Fe, Co) for Lithium Rechargeable Battery Electrodes. Chemistry of Materials, 23 (17), 3930-3937 (2011).

@article{esrl2011paper155,
  title = {Neutron and X-ray Diffraction Study of Pyrophosphate-Based Li2–xMP2O7 (M= Fe, Co) for Lithium Rechargeable Battery Electrodes},
  author = {H Kim and S Lee and YU Park and H Kim and J Kim and S Jeon and K Kang},
  journal = {Chemistry of Materials},
  year = {2011},
  url = {https://doi.org/10.1021/cm201305z},
  doi = {10.1021/cm201305z}
}
Advanced Materials, 22 (46), 5260-5264 (2010)2010

Fabrication of FeF3 nanoflowers on CNT branches and their application to high power lithium rechargeable batteries

SW Kim, DH Seo, H Gwon, J Kim, K Kang

Lithium / Li
IF 8.4JCR Top 3.31%2009 metricsDetails · 지표 정보

논문 게재연도(2010)의 전년도인 2009년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, PHYSICAL · 4/121 journals

  • CHEMISTRY, PHYSICAL4/121 journals · Top 3.31%
  • PHYSICS, APPLIED4/108 journals · Top 3.70%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY8/214 journals · Top 3.74%
  • PHYSICS, CONDENSED MATTER4/66 journals · Top 6.06%
  • CHEMISTRY, MULTIDISCIPLINARY9/140 journals · Top 6.43%
  • NANOSCIENCE & NANOTECHNOLOGY4/59 journals · Top 6.78%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

SW Kim, DH Seo, H Gwon, J Kim, K Kang. Fabrication of FeF3 nanoflowers on CNT branches and their application to high power lithium rechargeable batteries. Advanced Materials, 22 (46), 5260-5264 (2010).

@article{esrl2010paper156,
  title = {Fabrication of FeF3 nanoflowers on CNT branches and their application to high power lithium rechargeable batteries},
  author = {SW Kim and DH Seo and H Gwon and J Kim and K Kang},
  journal = {Advanced Materials},
  year = {2010},
  url = {https://doi.org/10.1002/adma.201002879},
  doi = {10.1002/adma.201002879}
}
Chemistry of Materials, 22 (8), 2573-2581 (2010)2010

Synthesis of multicomponent olivine by a novel mixed transition metal oxalate coprecipitation method and electrochemical characterization

YU Park, J Kim, H Gwon, DH Seo, SW Kim, K Kang

IF 5.4JCR Top 6.54%2009 metricsDetails · 지표 정보

논문 게재연도(2010)의 전년도인 2009년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 14/214 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY14/214 journals · Top 6.54%
  • CHEMISTRY, PHYSICAL13/121 journals · Top 10.74%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

YU Park, J Kim, H Gwon, DH Seo, SW Kim, K Kang. Synthesis of multicomponent olivine by a novel mixed transition metal oxalate coprecipitation method and electrochemical characterization. Chemistry of Materials, 22 (8), 2573-2581 (2010).

@article{esrl2010paper157,
  title = {Synthesis of multicomponent olivine by a novel mixed transition metal oxalate coprecipitation method and electrochemical characterization},
  author = {YU Park and J Kim and H Gwon and DH Seo and SW Kim and K Kang},
  journal = {Chemistry of Materials},
  year = {2010},
  url = {https://doi.org/10.1021/cm903616d},
  doi = {10.1021/cm903616d}
}
J. Korean Battery Soc, 3, 00-00 (2010)2010

Synthesis of NaFePO4/NaCoPO4 and their application to sodium batteries

R Shakoor, YU Park, J Kim, SW Kim, DH Seo, H Gwon, K Kang

Sodium / Na
Citation & BibTeX · 인용 정보

R Shakoor, YU Park, J Kim, SW Kim, DH Seo, H Gwon, K Kang. Synthesis of NaFePO4/NaCoPO4 and their application to sodium batteries. J. Korean Battery Soc, 3, 00-00 (2010).

@article{esrl2010paper158,
  title = {Synthesis of NaFePO4/NaCoPO4 and their application to sodium batteries},
  author = {R Shakoor and YU Park and J Kim and SW Kim and DH Seo and H Gwon and K Kang},
  journal = {J. Korean Battery Soc},
  year = {2010},
  url = {https://scholar.google.co.kr/scholar?hl=en\&as\_sdt=0,5\&cluster=14242650915617853551}
}
Chemical Communications, 46 (8), 1305-1307 (2010)2010

Mn based olivine electrode material with high power and energy

J Kim, DH Seo, SW Kim, YU Park, K Kang

IF 5.5JCR Top 11.43%2009 metricsDetails · 지표 정보

논문 게재연도(2010)의 전년도인 2009년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
CHEMISTRY, MULTIDISCIPLINARY · 16/140 journals

  • CHEMISTRY, MULTIDISCIPLINARY16/140 journals · Top 11.43%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, DH Seo, SW Kim, YU Park, K Kang. Mn based olivine electrode material with high power and energy. Chemical Communications, 46 (8), 1305-1307 (2010).

@article{esrl2010paper159,
  title = {Mn based olivine electrode material with high power and energy},
  author = {J Kim and DH Seo and SW Kim and YU Park and K Kang},
  journal = {Chemical Communications},
  year = {2010},
  url = {https://doi.org/10.1039/b922133f},
  doi = {10.1039/b922133f}
}
Chemistry of Materials, 22 (2), 518-523 (2010)2010

Multicomponent olivine cathode for lithium rechargeable batteries: a first-principles study

DH Seo, H Gwon, SW Kim, J Kim, K Kang

Lithium / LiModeling
IF 5.4JCR Top 6.54%2009 metricsDetails · 지표 정보

논문 게재연도(2010)의 전년도인 2009년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 14/214 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY14/214 journals · Top 6.54%
  • CHEMISTRY, PHYSICAL13/121 journals · Top 10.74%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

DH Seo, H Gwon, SW Kim, J Kim, K Kang. Multicomponent olivine cathode for lithium rechargeable batteries: a first-principles study. Chemistry of Materials, 22 (2), 518-523 (2010).

@article{esrl2010paper160,
  title = {Multicomponent olivine cathode for lithium rechargeable batteries: a first-principles study},
  author = {DH Seo and H Gwon and SW Kim and J Kim and K Kang},
  journal = {Chemistry of Materials},
  year = {2010},
  url = {https://doi.org/10.1021/cm903138s},
  doi = {10.1021/cm903138s}
}
Advanced Functional Materials, 19 (20), 3285-3292 (2009)2009

Combined First‐Principle Calculations and Experimental Study on Multi‐Component Olivine Cathode for Lithium Rechargeable Batteries

H Gwon, DH Seo, SW Kim, J Kim, K Kang

Lithium / LiModeling
IF 6.8JCR Top 4.21%2008 metricsDetails · 지표 정보

논문 게재연도(2009)의 전년도인 2008년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
PHYSICS, APPLIED · 4/95 journals

  • PHYSICS, APPLIED4/95 journals · Top 4.21%
  • MATERIALS SCIENCE, MULTIDISCIPLINARY9/192 journals · Top 4.69%
  • CHEMISTRY, PHYSICAL6/113 journals · Top 5.31%
  • PHYSICS, CONDENSED MATTER4/62 journals · Top 6.45%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

H Gwon, DH Seo, SW Kim, J Kim, K Kang. Combined First‐Principle Calculations and Experimental Study on Multi‐Component Olivine Cathode for Lithium Rechargeable Batteries. Advanced Functional Materials, 19 (20), 3285-3292 (2009).

@article{esrl2009paper161,
  title = {Combined First‐Principle Calculations and Experimental Study on Multi‐Component Olivine Cathode for Lithium Rechargeable Batteries},
  author = {H Gwon and DH Seo and SW Kim and J Kim and K Kang},
  journal = {Advanced Functional Materials},
  year = {2009},
  url = {https://doi.org/10.1002/adfm.200900414},
  doi = {10.1002/adfm.200900414}
}
Electrochimica Acta, 54 (24), 5914-5918 (2009)2009

Comparative study of Li(Li1/3Ti5/3)O4 and Li(Ni1/2−xLi2x/3Tix/3)Ti3/2O4 (x= 1/3) anodes for Li rechargeable batteries

J Kim, SW Kim, H Gwon, WS Yoon, K Kang

Lithium / Li
IF 3.1JCR Top 22.73%2008 metricsDetails · 지표 정보

논문 게재연도(2009)의 전년도인 2008년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
ELECTROCHEMISTRY · 5/22 journals

  • ELECTROCHEMISTRY5/22 journals · Top 22.73%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

J Kim, SW Kim, H Gwon, WS Yoon, K Kang. Comparative study of Li(Li1/3Ti5/3)O4 and Li(Ni1/2−xLi2x/3Tix/3)Ti3/2O4 (x= 1/3) anodes for Li rechargeable batteries. Electrochimica Acta, 54 (24), 5914-5918 (2009).

@article{esrl2009paper162,
  title = {Comparative study of Li(Li1/3Ti5/3)O4 and Li(Ni1/2−xLi2x/3Tix/3)Ti3/2O4 (x= 1/3) anodes for Li rechargeable batteries},
  author = {J Kim and SW Kim and H Gwon and WS Yoon and K Kang},
  journal = {Electrochimica Acta},
  year = {2009},
  url = {https://doi.org/10.1016/j.electacta.2009.05.058},
  doi = {10.1016/j.electacta.2009.05.058}
}
Journal of The Electrochemical Society, 156 (8), A635-A638, (2009)2009

Phase Stability Study of Li1−xMnPO4 (0⩽ x⩽ 1) Cathode for Li Rechargeable Battery

SW Kim, J Kim, H Gwon, K Kang

Lithium / Li
IF 2.4JCR Top 6.25%2008 metricsDetails · 지표 정보

논문 게재연도(2009)의 전년도인 2008년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, COATINGS & FILMS · 1/16 journals

  • MATERIALS SCIENCE, COATINGS & FILMS1/16 journals · Top 6.25%
  • ELECTROCHEMISTRY9/22 journals · Top 40.91%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

SW Kim, J Kim, H Gwon, K Kang. Phase Stability Study of Li1−xMnPO4 (0⩽ x⩽ 1) Cathode for Li Rechargeable Battery. Journal of The Electrochemical Society, 156 (8), A635-A638, (2009).

@article{esrl2009paper163,
  title = {Phase Stability Study of Li1−xMnPO4 (0⩽ x⩽ 1) Cathode for Li Rechargeable Battery},
  author = {SW Kim and J Kim and H Gwon and K Kang},
  journal = {Journal of The Electrochemical Society},
  year = {2009},
  url = {https://doi.org/10.1149/1.3138705},
  doi = {10.1149/1.3138705}
}
ACS Nano, 3 (5), 1085-1090 (2009)2009

Fabrication and electrochemical characterization of TiO2 three-dimensional nanonetwork based on peptide assembly

SW Kim, TH Han, J Kim, H Gwon, HS Moon, SW Kang, SO Kim, K Kang

IF 5.5JCR Top 6.25%2008 metricsDetails · 지표 정보

논문 게재연도(2009)의 전년도인 2008년 IF·JCR 지표를 표시합니다.

Best-ranked category · 최상위 분야
MATERIALS SCIENCE, MULTIDISCIPLINARY · 12/192 journals

  • MATERIALS SCIENCE, MULTIDISCIPLINARY12/192 journals · Top 6.25%
  • CHEMISTRY, MULTIDISCIPLINARY11/127 journals · Top 8.66%
  • NANOSCIENCE & NANOTECHNOLOGY7/52 journals · Top 13.46%

Public JCR data · 공개 연도별 자료

Citation & BibTeX · 인용 정보

SW Kim, TH Han, J Kim, H Gwon, HS Moon, SW Kang, SO Kim, K Kang. Fabrication and electrochemical characterization of TiO2 three-dimensional nanonetwork based on peptide assembly. ACS Nano, 3 (5), 1085-1090 (2009).

@article{esrl2009paper164,
  title = {Fabrication and electrochemical characterization of TiO2 three-dimensional nanonetwork based on peptide assembly},
  author = {SW Kim and TH Han and J Kim and H Gwon and HS Moon and SW Kang and SO Kim and K Kang},
  journal = {ACS Nano},
  year = {2009},
  url = {https://doi.org/10.1021/nn900062q},
  doi = {10.1021/nn900062q}
}