Highly efficient electrocatalytic hydrogen evolution promoted by O–Mo–C interfaces of ultrafine β-Mo2C nanostructures

Author:

Yang Hui12345,Chen Xing6784,Hu Guoxiang9101112,Chen Wan-Ting1314151617,Bradley Siobhan J.1318192017,Zhang Weijie5212212,Verma Gaurav5212212,Nann Thomas1318192017,Jiang De-en5232412ORCID,Kruger Paul E.1325262717ORCID,Wang Xiangke1234ORCID,Tian He6784,Waterhouse Geoffrey I. N.1314151617,Telfer Shane G.1328293017ORCID,Ma Shengqian5212212ORCID

Affiliation:

1. College of Environmental Science and Engineering

2. North China Electric Power University

3. Beijing

4. P. R. China

5. Department of Chemistry

6. Center of Electron Microscopy

7. Zhejiang University

8. Hangzhou 310027

9. Center for Nanophase Materials Sciences

10. Oak Ridge National Laboratory

11. Oak Ridge

12. USA

13. MacDiarmid Institute for Advanced Materials and Nanotechnology

14. School of Chemical Sciences

15. The University of Auckland

16. Auckland 1142

17. New Zealand

18. School of Chemical and Physical Sciences

19. Victoria University of Wellington

20. Wellington 6140

21. University of South Florida

22. Tampa

23. University of California

24. Riverside

25. School of Physical and Chemical Sciences

26. University of Canterbury

27. Christchurch 8140

28. Institute of Fundamental Sciences

29. Massey University

30. Palmerston North 4442

Abstract

Ultrafine β-Mo2C nanostructures encapsulated in N-doped carbon capsules featuring O–Mo–C interfaces as the active sites for HER have been unveiled.

Funder

Basic Energy Sciences

North China Electrical Power University

Ministry of Business, Innovation and Employment

University of South Florida

Australian Nuclear Science and Technology Organisation

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

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