Quantifying the reaction mechanisms of a high-capacity CuP2/C composite anode for potassium ion batteries

Author:

Zhao Chen12345,Chen Huixin56789ORCID,Liu Haodong10111213,Yin Liang1415161713,Zhang Qiaobao181920214ORCID,Yu Sicen10111213,Liu Ping10111213ORCID,Zhong Guiming12345ORCID,Lu Can-Zhong12345ORCID,Yang Yong2223242021ORCID

Affiliation:

1. College of Chemistry

2. Fuzhou University

3. Fuzhou 350108

4. China

5. CAS Key Laboratory of Design and Assembly of Functional Nanostructures

6. Fujian Provincial Key Laboratory of Nanomaterials

7. Fujian Institute of Research on the Structure of Matter

8. Chinese Academy of Sciences

9. Fuzhou 350002

10. Department of Nanoengineering

11. University of California San Diego

12. La Jolla

13. USA

14. X-ray Science Division

15. Advanced Photon Source

16. Argonne National Laboratory

17. Lemont

18. Department of Materials Science and Engineering

19. College of Materials

20. Xiamen University

21. Xiamen 361005

22. State Key Lab of Physical Chemistry of Solid Surfaces

23. Collaborative Innovation Center of Chemistry for Energy Materials

24. Department of Chemistry

Abstract

The evolution process of various K–P alloys in a prepared CuP2/C composite for potassium ion batteries is illustrated, revealing that POx components in the composite are reversible.

Funder

Chinese Academy of Sciences

National Natural Science Foundation of China

Natural Science Foundation of Fujian Province

Fujian Institute of Research on the Structure of Matter

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry

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