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.

16 publications

† / ‡ Equal contribution · * Corresponding author

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{esrl2020paper1,
  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{esrl2020paper2,
  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{esrl2020paper3,
  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{esrl2020paper4,
  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{esrl2020paper5,
  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{esrl2020paper6,
  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{esrl2020paper7,
  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{esrl2020paper8,
  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{esrl2020paper9,
  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{esrl2020paper10,
  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{esrl2020paper11,
  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{esrl2020paper12,
  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{esrl2020paper13,
  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{esrl2020paper14,
  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{esrl2020paper15,
  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{esrl2020paper16,
  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}
}