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Won-Jin Kwak (곽원진)
Won-Jin Kwak (곽원진)
다른 이름WJ Kwak, W.-J. Kwak
School of Energy and Chemical Engineering at Ulsan National Institute of Science and Technology
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Lithium–oxygen batteries and related systems: potential, status, and future
WJ Kwak, Rosy, D Sharon, C Xia, H Kim, LR Johnson, PG Bruce, ...
Chemical Reviews 120 (14), 6626-6683, 2020
8202020
Li–O 2 cells with LiBr as an electrolyte and a redox mediator
WJ Kwak, D Hirshberg, D Sharon, M Afri, AA Frimer, HG Jung, D Aurbach, ...
Energy & Environmental Science 9 (7), 2334-2345, 2016
2672016
A Mo2C/Carbon Nanotube Composite Cathode for Lithium–Oxygen Batteries with High Energy Efficiency and Long Cycle Life
WJ Kwak, KC Lau, CD Shin, K Amine, LA Curtiss, YK Sun
ACS nano 9 (4), 4129-4137, 2015
2472015
An advanced lithium–air battery exploiting an ionic liquid-based electrolyte
GA Elia, J Hassoun, WJ Kwak, YK Sun, B Scrosati, F Mueller, D Bresser, ...
Nano letters 14 (11), 6572-6577, 2014
2472014
Understanding the behavior of Li–oxygen cells containing LiI
WJ Kwak, D Hirshberg, D Sharon, HJ Shin, M Afri, JB Park, A Garsuch, ...
Journal of Materials Chemistry A 3 (16), 8855-8864, 2015
2282015
Mechanistic role of Li+ dissociation level in aprotic Li–O2 battery
D Sharon, D Hirsberg, M Salama, M Afri, AA Frimer, M Noked, W Kwak, ...
ACS applied materials & interfaces 8 (8), 5300-5307, 2016
1512016
Deactivation of redox mediators in lithium-oxygen batteries by singlet oxygen
WJ Kwak, H Kim, YK Petit, C Leypold, TT Nguyen, N Mahne, P Redfern, ...
Nature communications 10 (1), 1380, 2019
1042019
Optimized Concentration of Redox Mediator and Surface Protection of Li Metal for Maintenance of High Energy Efficiency in Li–O2 Batteries
WJ Kwak, SJ Park, HG Jung, YK Sun
Advanced Energy Materials 8 (9), 1702258, 2018
1032018
A sustainable iron-based sodium ion battery of porous carbon–Fe 3 O 4/Na 2 FeP 2 O 7 with high performance
J Ming, H Ming, W Yang, WJ Kwak, JB Park, J Zheng, YK Sun
Rsc Advances 5 (12), 8793-8800, 2015
882015
Nanoconfinement of low-conductivity products in rechargeable sodium–air batteries
WJ Kwak, Z Chen, CS Yoon, JK Lee, K Amine, YK Sun
Nano Energy 12, 123-130, 2015
812015
A comparative evaluation of redox mediators for Li-O2 batteries: A critical review
WJ Kwak, H Kim, HG Jung, D Aurbach, YK Sun
Journal of the Electrochemical Society 165 (10), A2274, 2018
802018
The binder effect on an oxide-based anode in lithium and sodium-ion battery applications: the fastest way to ultrahigh performance
J Ming, H Ming, WJ Kwak, C Shin, J Zheng, YK Sun
Chemical Communications 50 (87), 13307-13310, 2014
802014
Rational Design of Electrolytes for Long-Term Cycling of Si Anodes over a Wide Temperature Range
S Chae, WJ Kwak, KS Han, S Li, MH Engelhard, J Hu, C Wang, X Li, ...
ACS Energy Letters 6 (2), 387–394, 2021
762021
Optimized Bicompartment Two Solution Cells for Effective and Stable Operation of Li–O2 Batteries
WJ Kwak, HG Jung, D Aurbach, YK Sun
Advanced Energy Materials 7 (21), 1701232, 2017
742017
A dendrite-and oxygen-proof protective layer for lithium metal in lithium–oxygen batteries
WJ Kwak, J Park, TT Nguyen, H Kim, HR Byon, M Jang, YK Sun
Journal of Materials Chemistry A 7 (8), 3857-3862, 2019
722019
Controversial Topics on Lithium Superoxide in Li–O2 Batteries
WJ Kwak, JB Park, HG Jung, YK Sun
ACS Energy Letters 2 (12), 2756-2760, 2017
602017
Optimized Electrolyte with High Electrochemical Stability and Oxygen Solubility for Lithium-Oxygen and Lithium-Air Batteries
WJ Kwak, S Chae, R Feng, P Gao, JA Read, MH Engelhard, L Zhong, ...
ACS Energy Letters 5 (7), 2182–2190, 2020
572020
Sustainable encapsulation strategy of silicon nanoparticles in microcarbon sphere for high-performance lithium-ion battery anode
HJ Shin, JY Hwang, HJ Kwon, WJ Kwak, SO Kim, HS Kim, HG Jung
ACS Sustainable Chemistry & Engineering 8 (37), 14150-14158, 2020
552020
Initial investigation and evaluation of potassium metal as an anode for rechargeable potassium batteries
J Park, J Lee, MH Alfaruqi, WJ Kwak, J Kim, JY Hwang
Journal of Materials Chemistry A 8 (33), 16718-16737, 2020
542020
Lithiation of an Iron Oxide‐Based Anode for Stable, High‐Capacity Lithium‐Ion Batteries of Porous Carbon–Fe3O4/Li[Ni0.59Co0.16Mn0.25]O2
J Ming, WJ Kwak, SJ Youn, H Ming, J Hassoun, YK Sun
Energy Technology 2 (9‐10), 778-785, 2014
542014
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