CVD-grown copper tungstate thin films for solar water splitting

Author:

Peeters D.12345ORCID,Mendoza Reyes O.6785,Mai L.12345ORCID,Sadlo A.12345ORCID,Cwik S.12345,Rogalla D.92345ORCID,Becker H.-W.92345,Schütz H. M.6785,Hirst J.1011125,Müller S.1011125,Friedrich D.1011125ORCID,Mitoraj D.6785,Nagli M.13141516,Toroker M. Caspary13141516ORCID,Eichberger R.1011125ORCID,Beranek R.6785ORCID,Devi A.12345ORCID

Affiliation:

1. Inorganic Materials Chemistry

2. Ruhr-University Bochum

3. Universitätsstr. 150

4. 44780 Bochum

5. Germany

6. Institute of Electrochemistry

7. Ulm University

8. 89069 Ulm

9. RUBION

10. Institute for Solar Fuels

11. Helmholtz-Zentrum Berlin für Materialien und Energie GmbH

12. 14109 Berlin

13. Department of Materials Science and Engineering

14. Technion – Israel Institute of Technology

15. Haifa 3200003

16. Israel

Abstract

In this paper, a direct chemical vapor deposition (CVD) approach is applied for the first time to synthesize high quality copper oxide (CuO), copper tungstate (CuWO4) and tungsten oxide (WO3) on F:SnO2 (FTO) substrates for photocatalytic water splitting.

Funder

Deutsche Forschungsgemeinschaft

Israel Science Foundation

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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