Dual-doping to suppress cracking in spinel LiMn2O4: a joint theoretical and experimental study

Author:

Zhang Zhifeng1234,Chen Zhenlian1234,Wang Guangjin12345,Ren Heng1234,Pan Mu564,Xiao Lingli784,Wu Kuicheng784,Zhao Liutao784,Yang Jianqing784,Wu Qingguo784,Shu Jie910114,Wang Dongjie910114,Zhang Hongli1284,Huo Ni13144,Li Jun1234

Affiliation:

1. Ningbo Institute of Material Technology & Engineering

2. Chinese Academy of Sciences

3. Ningbo 315201

4. China

5. Wuhan University of Technology

6. Wuhan 430070

7. Zhejiang WELLY Energy Corporation

8. Cixi 315301

9. College of Mater. Sci. and Chem. Eng.

10. Ningbo University

11. Ningbo 315211

12. Ningbo Shijie New Energy Technology LLC

13. Beijing University of Chemical Technology

14. Beijing 100029

Abstract

Bonding Layout (purple line) of Mn3+ (green balls) results in different unit cells (blue box), correlating to distinct cracking tendency in long-term charging-discharging cycling.

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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