Sun-Ho Kang
Sun-Ho Kang
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Li 2 MnO 3-stabilized LiMO 2 (M= Mn, Ni, Co) electrodes for lithium-ion batteries
MM Thackeray, SH Kang, CS Johnson, JT Vaughey, R Benedek, ...
Journal of Materials chemistry 17 (30), 3112-3125, 2007
Demonstrating Oxygen Loss and Associated Structural Reorganization in the Lithium Battery Cathode Li[Ni0.2Li0.2Mn0.6]O2
AR Armstrong, M Holzapfel, P Novák, CS Johnson, SH Kang, ...
Journal of the American Chemical Society 128 (26), 8694-8698, 2006
Ultrathin direct atomic layer deposition on composite electrodes for highly durable and safe Li-ion batteries
YS Jung, AS Cavanagh, LA Riley, SH Kang, AC Dillon, MD Groner, ...
Advanced Materials 22 (19), 2172, 2010
Enabling sodium batteries using lithium‐substituted sodium layered transition metal oxide cathodes
D Kim, SH Kang, M Slater, S Rood, JT Vaughey, N Karan, ...
Advanced Energy Materials 1 (3), 333-336, 2011
Comments on the structural complexity of lithium-rich Li1+ xM1− xO2 electrodes (M= Mn, Ni, Co) for lithium batteries
MM Thackeray, SH Kang, CS Johnson, JT Vaughey, SA Hackney
Electrochemistry Communications 8 (9), 1531-1538, 2006
Enhancing the rate capability of high capacity xLi2MnO3ˇ(1− x) LiMO2 (M= Mn, Ni, Co) electrodes by Li–Ni–PO4 treatment
SH Kang, MM Thackeray
Electrochemistry Communications 11 (4), 748-751, 2009
Countering the voltage decay in high capacity xLi2MnO3•(1–x) LiMO2 electrodes (M= Mn, Ni, Co) for Li+-ion batteries
JR Croy, D Kim, M Balasubramanian, K Gallagher, SH Kang, ...
Journal of The Electrochemical Society 159 (6), A781, 2012
Improved lithium manganese oxide spinel/graphite Li-ion cells for high-power applications
K Amine, J Liu, S Kang, I Belharouak, Y Hyung, D Vissers, G Henriksen
Journal of power sources 129 (1), 14-19, 2004
Interpreting the structural and electrochemical complexity of 0.5 Li 2 MnO 3ˇ 0.5 LiMO 2 electrodes for lithium batteries (M= Mn 0.5− x Ni 0.5− x Co 2x, 0≤ x≤ 0.5)
SH Kang, P Kempgens, S Greenbaum, AJ Kropf, K Amine, MM Thackeray
Journal of Materials Chemistry 17 (20), 2069-2077, 2007
Layered Li (Ni0. 5− xMn0. 5− xM2x′) O2 (M′= Co, Al, Ti; x= 0, 0.025) cathode materials for Li-ion rechargeable batteries
SH Kang, J Kim, ME Stoll, D Abraham, YK Sun, K Amine
Journal of Power Sources 112 (1), 41-48, 2002
The effects of acid treatment on the electrochemical properties of 0.5 Li2MnO3∙ 0.5 LiNi0. 44Co0. 25Mn0. 31O2 electrodes in lithium cells
SH Kang, CS Johnson, JT Vaughey, K Amine, MM Thackeray
Journal of the Electrochemical Society 153 (6), A1186, 2006
Examining Hysteresis in Composite xLi2MnO3ˇ(1–x)LiMO2 Cathode Structures
JR Croy, KG Gallagher, M Balasubramanian, Z Chen, Y Ren, D Kim, ...
The Journal of Physical Chemistry C 117 (13), 6525-6536, 2013
Lithium–manganese–nickel-oxide electrodes with integrated layered–spinel structures for lithium batteries
SH Park, SH Kang, CS Johnson, K Amine, MM Thackeray
Electrochemistry Communications 9 (2), 262-268, 2007
Long-Range and Local Structure in the Layered Oxide Li1.2Co0.4Mn0.4O2
J Bareno, M Balasubramanian, SH Kang, JG Wen, CH Lei, SV Pol, ...
Chemistry of Materials 23 (8), 2039-2050, 2011
Physical and electrochemical properties of spherical Li1+ x (Ni1/3Co1/3Mn1/3) 1− xO2 cathode materials
SH Park, SH Kang, I Belharouak, YK Sun, K Amine
Journal of Power Sources 177 (1), 177-183, 2008
Local Structure of Layered Oxide Electrode Materials for Lithium‐Ion Batteries
J Bareno, CH Lei, JG Wen, SH Kang, I Petrov, DP Abraham
Advanced materials 22 (10), 1122-1127, 2010
Investigating the solid electrolyte interphase using binder-free graphite electrodes
SH Kang, DP Abraham, A Xiao, BL Lucht
Journal of Power Sources 175 (1), 526-532, 2008
Layered cathode materials for lithium ion rechargeable batteries
SH Kang, K Amine
US Patent 7,205,072, 2007
Examining the solid electrolyte interphase on binder-free graphite electrodes
A Xiao, L Yang, BL Lucht, SH Kang, DP Abraham
Journal of The Electrochemical Society 156 (4), A318, 2009
Local structure and composition studies of Li1. 2Ni0. 2Mn0. 6O2 by analytical electron microscopy
CH Lei, J Bareno, JG Wen, I Petrov, SH Kang, DP Abraham
Journal of Power Sources 178 (1), 422-433, 2008
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