Electronic and optical properties of single crystal SnS2: an earth-abundant disulfide photocatalyst

Author:

Burton Lee A.1234,Whittles Thomas J.56789,Hesp David56789,Linhart Wojciech M.56789,Skelton Jonathan M.1011121314,Hou Bo1516179,Webster Richard F.181920219,O'Dowd Graeme56789,Reece Christian2223249,Cherns David181920219,Fermin David J.2220219,Veal Tim D.56789,Dhanak Vin R.56789,Walsh Aron1011121314

Affiliation:

1. Materials and Structures Laboratory

2. Tokyo Institute of Technology

3. Yokohama 226-8503

4. Japan

5. Stephenson Institute for Renewable Energy

6. Department of Physics

7. University of Liverpool

8. Liverpool

9. UK

10. Centre for Sustainable Chemical Technologies

11. Department of Chemistry

12. University of Bath

13. Bath

14. BA2 7AY UK

15. Department of Engineering Science

16. University of Oxford

17. Oxford OX1 3PJ

18. School of Physics

19. HH Wills Physics Laboratory

20. University of Bristol

21. Bristol

22. School of Chemistry

23. Cardiff University

24. Cardiff CF10 3AT

Abstract

Crystals of earth-abundant tin disulfide exhibit high-surface-area platelet formation with ideal photocatalytic properties for water splitting in their ground state.

Funder

Japan Society for the Promotion of Science

Engineering and Physical Sciences Research Council

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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