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

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{esrl2019paper1,
  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{esrl2019paper2,
  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{esrl2019paper3,
  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{esrl2019paper4,
  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{esrl2019paper5,
  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{esrl2019paper6,
  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{esrl2019paper7,
  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{esrl2019paper8,
  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{esrl2019paper9,
  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{esrl2019paper10,
  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{esrl2019paper11,
  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{esrl2019paper12,
  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{esrl2019paper13,
  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}
}