One-pot synthesized molybdenum dioxide–molybdenum carbide heterostructures coupled with 3D holey carbon nanosheets for highly efficient and ultrastable cycling lithium-ion storage

Author:

Hou Chuanxin12345,Wang Jun1234ORCID,Du Wei6784,Wang Jianchuan910114,Du Yong910114,Liu Chuntai1213141516,Zhang Jiaoxia1718194,Hou Hua2021224,Dang Feng1234,Zhao Lanling2322425ORCID,Guo Zhanhu526272829ORCID

Affiliation:

1. Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education)

2. Shandong University

3. Jinan 250061

4. China

5. Integrated Composites Laboratory (ICL)

6. School of Environment and Material Engineering

7. Yantai University

8. Yantai 264005

9. State Key Laboratory of Powder Metallurgy

10. Central South University

11. Changsha

12. Key Laboratory of Materials Processing and Mold (Zhengzhou University)

13. Ministry of Education

14. National Engineering Research Center for Advanced Polymer Processing Technology

15. Zhengzhou University

16. Zhengzhou

17. School of Material Science and Engineering

18. Jiangsu University of Science and Technology

19. Zhenjiang

20. School of Materials Science and Engineering

21. North University of China

22. Taiyuan 030051

23. School of Physics

24. Jinan

25. P. R. China

26. Department of Chemical & Biomolecular Engineering

27. University of Tennessee

28. Knoxville

29. USA

Abstract

The function of the interfacial effect caused by MoO2/Mo2C heterostructures was proved by DFT and DOS calculations, promoting ultrastable cycling performance.

Funder

Shandong University

State Key Laboratory of New Ceramics and Fine Processing

China Scholarship Council

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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