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CHANGHEUM JO
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An effective method to reduce residual lithium compounds on Ni-rich Li[Ni0.6Co0.2Mn0.2]O2 active material using a phosphoric acid derived Li3PO4 nanolayer
CH Jo, DH Cho, HJ Noh, H Yashiro, YK Sun, ST Myung
Nano Research 8, 1464-1479, 2015
3482015
Effect of residual lithium compounds on layer Ni-rich Li [Ni0. 7Mn0. 3] O2
DH Cho, CH Jo, W Cho, YJ Kim, H Yashiro, YK Sun, ST Myung
Journal of The Electrochemical Society 161 (6), A920, 2014
3162014
Bioinspired surface layer for the cathode material of high‐energy‐density sodium‐ion batteries
CH Jo, JH Jo, H Yashiro, SJ Kim, YK Sun, ST Myung
Advanced Energy Materials 8 (13), 1702942, 2018
962018
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
Advanced Functional Materials 29 (28), 1901912, 2019
872019
Efficient recycling of valuable resources from discarded lithium-ion batteries
CH Jo, ST Myung
Journal of Power Sources 426, 259-265, 2019
782019
Re-heating effect of Ni-rich cathode material on structure and electrochemical properties
JH Jo, CH Jo, H Yashiro, SJ Kim, ST Myung
Journal of Power Sources 313, 1-8, 2016
752016
Nickel oxalate dihydrate nanorods attached to reduced graphene oxide sheets as a high-capacity anode for rechargeable lithium batteries
HJ Oh, CH Jo, CS Yoon, H Yashiro, SJ Kim, S Passerini, YK Sun, ...
NPG Asia Materials 8 (5), e270-e270, 2016
732016
Controllable charge capacity using a black additive for high-energy-density sodium-ion batteries
CH Jo, JU Choi, H Yashiro, ST Myung
Journal of materials chemistry A 7 (8), 3903-3909, 2019
502019
Nature-derived cellulose-based composite separator for sodium-ion batteries
JH Jo, CH Jo, Z Qiu, H Yashiro, L Shi, Z Wang, S Yuan, ST Myung
Frontiers in Chemistry 8, 153, 2020
422020
Gifts from nature: bio‐inspired materials for rechargeable secondary batteries
CH Jo, N Voronina, YK Sun, ST Myung
Advanced Materials 33 (37), 2006019, 2021
342021
Understanding the role of trace amount of Fe incorporated in Ni-rich Li [Ni1-x-yCoxMny] O2 cathode material
S Park, C Jo, HJ Kim, S Kim, ST Myung, HK Kang, H Kim, J Song, J Yu, ...
Journal of Alloys and Compounds 835, 155342, 2020
332020
Single-crystalline particle Ni-based cathode materials for lithium-ion batteries: Strategies, status, and challenges to improve energy density and cyclability
CH Jo, N Voronina, ST Myung
Energy Storage Materials 51, 568-587, 2022
272022
Impact of Na 2 MoO 4 nanolayers autogenously formed on tunnel-type Na 0.44 MnO 2
JU Choi, JH Jo, CH Jo, MK Cho, YJ Park, Y Jin, H Yashiro, ST Myung
Journal of Materials Chemistry A 7 (22), 13522-13530, 2019
232019
Nb-Doped titanium phosphate for sodium storage: electrochemical performance and structural insights
N Voronina, JH Jo, JU Choi, CH Jo, J Kim, ST Myung
Journal of materials chemistry A 7 (10), 5748-5759, 2019
232019
Rocksalt-type metal sulfide anodes for high-rate sodium storage
CH Jo, JU Choi, ST Myung
Journal of Materials Chemistry A 6 (16), 6867-6873, 2018
232018
New conversion chemistry of CuSO4 as ultra-high-energy cathode material for rechargeable sodium battery
Y Lee, CH Jo, JK Yoo, JU Choi, W Ko, H Park, JH Jo, DO Shin, ST Myung, ...
Energy Storage Materials 24, 458-466, 2020
212020
Promising sodium storage of bismuthinite by conversion chemistry
JH Yu, CH Jo, HJ Kim, ST Myung
Energy Storage Materials 38, 241-248, 2021
172021
Oxalate-based high-capacity conversion anode for potassium storage
CH Jo, JH Jo, JU Choi, H Yashiro, H Kim, ST Myung
ACS sustainable chemistry & engineering 8 (9), 3743-3750, 2020
162020
Feasible Approaches for Anode-Free Lithium-Metal Batteries as Next Generation Energy Storage Systems
CH Jo, KS Sohn, ST Myung
Energy Storage Materials 57, 471-496, 2023
142023
Confinement of nanosized tin (IV) oxide particles on rGO sheets and its application to sodium-ion full cells as a high capacity anode material
CH Jo, JH Jo, ST Myung
Journal of Alloys and Compounds 731, 339-346, 2018
132018
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Articles 1–20