Heteroatom coordination induces electric field polarization of single Pt sites to promote hydrogen evolution activity

Author:

Peng Xianyun12345,Bao Haihong12345,Sun Jiaqiang67895ORCID,Mao Zhiyong2345ORCID,Qiu Yuan12345,Mo Zhaojun108115,Zhuo Longchao212135,Zhang Shusheng1415165ORCID,Luo Jun12345ORCID,Liu Xijun12345ORCID

Affiliation:

1. Institute for New Energy Materials and Low-Carbon Technologies and Tianjin Key Lab for Photoelectric Materials & Devices

2. School of Materials Science and Engineering

3. Tianjin University of Technology

4. Tianjin 300384

5. China

6. State Key Laboratory of Coal Conversion

7. Institute of Coal Chemistry

8. Chinese Academy of Sciences

9. Taiyuan 030001

10. Ganjiang Innovation Academy

11. Jiangxi 341000

12. Xi'an University of Technology

13. Xi'an 710048

14. College of Chemistry

15. Zhengzhou University

16. Zhengzhou 450000

Abstract

Single Pt atomic sites are stabilized on MXene support via the formation of Pt–O and Pt–Ti bonds. The unique asymmetric coordination environment of single Pt sites induces local electric field polarization, which remarkably enhances HER activity.

Funder

National Natural Science Foundation of China

Science Fund for Distinguished Young Scholars of Tianjin

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science

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