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.

19 publications

† / ‡ Equal contribution · * Corresponding author

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{esrl2018paper1,
  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{esrl2018paper2,
  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{esrl2018paper3,
  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{esrl2018paper4,
  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{esrl2018paper5,
  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{esrl2018paper6,
  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{esrl2018paper7,
  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{esrl2018paper8,
  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{esrl2018paper9,
  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{esrl2018paper10,
  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{esrl2018paper11,
  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{esrl2018paper12,
  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{esrl2018paper13,
  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{esrl2017paper14,
  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{esrl2017paper15,
  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{esrl2017paper16,
  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{esrl2017paper17,
  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{esrl2017paper18,
  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{esrl2017paper19,
  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}
}