Elucidating the impact of A-site cation change on photocatalytic H2 and O2 evolution activities of perovskite-type LnTaON2 (Ln = La and Pr)

Author:

Hojamberdiev Mirabbos12345ORCID,Bekheet Maged F.678910ORCID,Hart Judy N.11121314ORCID,Vequizo Junie Jhon M.1516171819,Yamakata Akira1516171819ORCID,Yubuta Kunio2021222324,Gurlo Aleksander678910,Hasegawa Masashi12345,Domen Kazunari2526272829ORCID,Teshima Katsuya3031323334ORCID

Affiliation:

1. Department of Materials Physics

2. Nagoya University

3. Furo-cho

4. Chikusa-ku

5. Nagoya 464-8603

6. Fachgebiet Keramische Werkstoffe/Chair of Advanced Ceramic Materials

7. Institut für Werkstoffwissenschaften und-technologien

8. Technische Universität Berlin

9. Hardenbergstraße 40

10. 10623 Berlin

11. School of Materials Science and Engineering

12. UNSW Sydney

13. Sydney 2052

14. Australia

15. Graduate School of Engineering

16. Toyota Technological Institute

17. 2-12-1 Hisakata

18. Tempaku

19. Nagoya 468-8511

20. Institute for Materials Research

21. Tohoku University

22. 2-1-1 Katahira

23. Aoba-ku

24. Sendai 980-8577

25. Department of Chemical System Engineering, School of Engineering

26. The University of Tokyo

27. 7-3-1 Hongo

28. Bunkyo-ku

29. Tokyo 113-8656

30. Department of Environmental Science and Technology

31. Faculty of Engineering

32. Shinshu University

33. 4-17-1 Wakasato

34. Nagano 380-8553

Abstract

Impact of A-site cation change on photocatalytic H2 and O2 evolution of LnTaON2 (Ln = La and Pr) was studied.

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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