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.

13 publications

† / ‡ Equal contribution · * Corresponding author

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{esrl2023paper1,
  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{esrl2023paper2,
  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{esrl2023paper3,
  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{esrl2023paper4,
  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{esrl2023paper5,
  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{esrl2023paper6,
  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{esrl2023paper7,
  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{esrl2023paper8,
  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{esrl2023paper9,
  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{esrl2023paper10,
  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{esrl2023paper11,
  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{esrl2023paper12,
  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{esrl2023paper13,
  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}
}