N-Bridged Co–N–Ni: new bimetallic sites for promoting electrochemical CO2 reduction

Author:

Pei Jiajing12345,Wang Tao67895,Sui Rui12345,Zhang Xuejiang12345,Zhou Danni1011125,Qin Fengjuan1011125ORCID,Zhao Xu1314155,Liu Qinghua1314155,Yan Wensheng1314155,Dong Juncai161718195,Zheng Lirong161718195ORCID,Li Ang2021225,Mao Junjie2324255,Zhu Wei12345ORCID,Chen Wenxing1011125,Zhuang Zhongbin12345ORCID

Affiliation:

1. State Key Lab of Organic–Inorganic Composites

2. College of Chemical Engineering

3. Beijing University of Chemical Technology

4. Beijing 100029

5. China

6. Center of Artificial Photosynthesis for Solar Fuels

7. School of Science

8. Westlake University

9. Hangzhou 310024

10. Energy & Catalysis Center, School of Materials Science and Engineering

11. Beijing Institute of Technology

12. Beijing 100081

13. National Synchrotron Radiation Laboratory

14. University of Science and Technology of China

15. Hefei 230029

16. Beijing Synchrotron Radiation Facility

17. Institute of High Energy Physics

18. Chinese Academy of Science

19. Beijing 100049

20. Institute of Microstructure and Property of Advanced Materials

21. Beijing University of Technology

22. Beijing 100124

23. College of Chemistry and Materials Science

24. Anhui Normal University

25. Wuhu

Abstract

An atomically dispersed catalyst (Co–N–Ni/NPCNSs), which features Co–N–Ni bimetallic sites connected by a N bridge between Co and Ni, serves as a new active site for boosting the CO2RR performance at a low overpotential.

Funder

National Natural Science Foundation of China

Beijing Institute of Technology Research Fund Program for Young Scholars

National Synchrotron Radiation Laboratory

Publisher

Royal Society of Chemistry (RSC)

Subject

Pollution,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment,Environmental Chemistry

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