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1.Zhan, Chun‡; Yao Zhenpeng‡; Lu, Jun; Ma, Lu; Maroni, Victor A.; Li, Liang; Lee, Eungje; Alp, Esen E.; Wu, Tianpin; Wen, Jianguo; Ren, Yang; Johnson, Christopher; Thackeray, Michael M.; Chan, Maria K. Y.; Wolverton, Chris; Amine Khalil, Unlocking the High Capacity of Super-Lithium-Rich Anti-Fluorite Li5FeO4 by Simultaneous Anion and Cation Redox. Nature Energy, 2017, 2 (12), 963. .
2.Zhan, Chun; Lu, Jun; Wu, Tianpin; Amine, Khalil, Dissolution, migration, and deposition of transition metal ions in Li-ion batteries exemplified by Mn-based cathodes–a critical review. Energy & Environmental Science, 2018.
3.Zhan, Chun ; Lu, Jun ; Kropf, A Jeremy; Wu, Tianpin; Jansen, Andrew N; Sun, Yang-Kook; Qiu,
Xinping; Amine, Khalil, Mn (II) deposition on anodes and its effects on capacity fade in spinel lithium manganate–carbon systems. Nature Communications, 2013, 4.
4.Lu Jun ; Zhan, Chun ; Wu, Tianpin; Wen, Jianguo; Lei, Yu; Kropf, A Jeremy; Wu, Huiming; Miller,
Dean J; Elam, Jeffrey W; Sun, Yang-Kook; Qiu, Xinping; Amine, Khalil, Effectively suppressing dissolution of manganese from spinel lithium manganate via a nanoscale surface-doping approach. Nature Communications, 2014.
5.Zhan, Chun; Qiu, Xinping; Lu, Jun; Amine, Khalil, Tuning the Mn deposition on the anode to improve the cycle performance of the Mn-based lithium ion battery. Advanced Materials Interfaces, 2016, 3 (11),
1500856.
6.Yuan, Yifei ; Zhan, Chun ; He, Kun; Chen, Hungru; Yao, Wentao; Sharifi-Asl, Soroosh; Song, Boao;
Yang, Zhenzhen; Nie, Anmin; Luo, Xiangyi; Wang, Hao; Wood, Stephen M.; Amine, Khalil; Islam, M. Saiful; Lu, Jun; Shahbazian-Yassar, Reza; The Influence of Large Cations on the Electrochemical Properties of Tunnel-Structured Metal Oxides, Nature Communications, 2016, 7,13374 .
7.Zhan, Chun; Cai, Feng; Amine, Khalil; Lu, Jun. Advanced Lithium Batter ies for Automobile Applications at ABAA-9, ACS Energy Letters, 2017, 2, 1628.
8.Li, Jinfeng; Zhan, Chun; Lu, Jun; Yuan, Yifei; Shahbazian-Yassar, Reza; Qiu, Xinping; Amine, Khalil, Improve first-cycle efficiency and rate performance of layered-layered Li1.2Mn0.6Ni0.2O2 using oxygen stabilizing dopant. ACS Applied Materials & Interfaces, 2015, 7(29): 16040-16045.
9.Bai, Ying; Zhou, Xingzhen; Zhan, Chun; Ma, Lu; Yuan, Yifei; Wu Chuan; Chen, Mizi; Chen, Guanghai; Ni, Qiao; Wu, Feng; Shahbazian-Yassar, Reza; Wu, Tianpin; Lu, Jun; Amine, Khalil, 3D Hierarchical nano-flake/micro-flower Iron fluoride with hydration water induced tunnels for secondary lithium battery cathodes, Nano Energy, 2017, 32, 10.
10.Zeng, Xiaoqiao; Zhan, Chun; Lu, Jun; Amine, Khalil, Stabilization of a High-Capacity and High-Power Nickel-Based Cathode for Li-Ion Batteries, Chem, 2018, Available online.
11.Tan, Guoqiang; Xu, Rui; Xing, Zhenyu; Yuan, Yifei; Lu, Jun Lu; Wen, Jianguo; Liu, Cong; Ma, Lu; Zhan, Chun; Liu, Qi; Wu, Tianpin; Jian, Zelang; Shahbazian-Yassar, Reza; Ren, Yang; Miller, Dean J.; Curtiss, Larry A.; Ji, Xiulei; Amine, Khalil, “Burning” Lithium in CS2: Compact Li2S@Graphene Nanocapsules for Li-S Batteries, Nature Energy, 2017,2, 17090.
12.Tan, Guoqiang; Wu, Feng; Zhan, Chun; Wang, Jing; Mu, Daobin; Lu, Jun; Amine, Khalil, Solid-state Li-ion batteries using fast, stable, glassy nanocomposite electrolytes for good safety and long cycle-life. Nano letters, 2016, 16(3), 1960-1968.
13.Vissers, Daniel R; Isheim, Dieter; Zhan, Chun; Chen, Zonghai; Lu, Jun; Amine, Khalil, Understanding atomic scale phenomena within the surface layer of a long-term cycled 5V spinel electrode. Nano Energy, 2016, 19297-306.
14.Teng, Xin; Zhan, Chun; Bai, Ying; Ma, Lu; Liu, Qi; Wu, Chuan; Wu, Feng; Yang, Yusheng; Lu, Jun; Am ine, Kh alil, In Situ Analysis of Gas Generation in Lithium-Ion Batteries with Diff erent Carbonate-Based Electrolytes. ACS Applied Materials & Interfaces, 2015, 7(41): 22751-22755.
15.Xie, Man; Luo, Rui; Lu, Jun; Chen, Renjie; Wu, Feng; Wang, Xiaoming; Zhan, Chun; Wu, Huiming; Albishri, Hassan M; Al-Bogami, Abdullah S, Synthesis-Microstructure-Performance Relationship of Layered Transition Metal Oxides as Cathode for Rechargeable Sodium Batteries Prepared by High-Temperature Calcination. ACS Applied Materials & Interfaces, 2014, 6(19): 17176-17183.