Strain stabilized nickel hydroxide nanoribbons for efficient water splitting

Author:

Wang X. P.123,Wu H. J.123ORCID,Xi S. B.453,Lee W. S. V.123,Zhang J.678910,Wu Z. H.678910ORCID,Wang J. O.678910,Hu T. D.678910,Liu L. M.1112131415ORCID,Han Y.1112131415ORCID,Chee S. W.162173,Ning S. C.123,Mirsaidov U.182193ORCID,Wang Z. B.20212223,Zhang Y. W.2425263ORCID,Borgna A.453ORCID,Wang J.123ORCID,Du Y. H.4532728,Yu Z. G.2425263ORCID,Pennycook S. J.123ORCID,Xue J. M.123ORCID

Affiliation:

1. Department of Materials Science and Engineering

2. National University of Singapore

3. Singapore

4. Institute of Chemical and Engineering Sciences

5. Agency for Science, Technology and Research

6. Beijing Synchrotron Radiation Facility

7. Institute of High Energy Physics

8. Chinese Academy of Sciences

9. Beijing 100049

10. People's Republic of China

11. Advanced Membranes and Porous Materials Center

12. Physical Science and Engineering Division

13. King Abdullah University of Science and Technology

14. Thuwal 23955-6900

15. Saudi Arabia

16. Centre for Bioimaging Sciences

17. Singapore 117557

18. Department of Physics

19. Singapore 117551

20. School of Chemistry and Chemical Engineering

21. Harbin Institute of Technology

22. Heilongjiang Sheng 150006

23. China

24. Institute of High Performance Computing

25. Agency for Science

26. Technology and Research

27. Brookhaven National Lab

28. New York

Abstract

Development of efficient and durable oxygen evolution reaction (OER) catalysts has a direct impact on the water splitting efficiency and cost effectiveness.

Funder

Ministry of Education - Singapore

National Research Foundation Singapore

Agency for Science, Technology and Research

Science and Engineering Research Council

National Natural Science Foundation of China

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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