High stability of ultra-small and isolated gold nanoparticles in metal–organic framework materials

Author:

Cure Jérémy12345ORCID,Mattson Eric1234,Cocq Kévin6789ORCID,Assi Hala6789,Jensen Stephanie1011124ORCID,Tan Kui1234,Catalano Massimo123413,Yuan Shuai1415164,Wang Hao1718194,Feng Liang1415164,Zhang Peng1415164ORCID,Kwon Sunah1234,Veyan Jean-François1234,Cabrera Yasiel1234,Zhang Guoyu1718194,Li Jing1718194,Kim Moon1234ORCID,Zhou Hong-Cai141516420ORCID,Chabal Yves J.1234ORCID,Thonhauser Timo1011124

Affiliation:

1. Department of Materials Science and Engineering

2. University of Texas at Dallas

3. Richardson

4. USA

5. LAAS-CNRS

6. LCC-CNRS

7. University of Toulouse

8. 31077 Toulouse

9. France

10. Department of Physics and Center for Functional Materials

11. Wake Forest University

12. Winston-Salem

13. Istituto Microelettronica e Microsistemi del Consiglio Nazionale delle Ricerche

14. Department of Chemistry

15. Texas A&M University

16. College Station

17. Department of Chemistry and Chemical Biology

18. Rutgers University

19. Piscataway

20. Department of Materials Sciences and Engineering

Abstract

Strong stabilization and localization understandings of ultra-small ∼1 nm Au/MOF hybrid materials by hydrogen evolution reaction.

Funder

U.S. Department of Energy

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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