Manipulation of planar oxygen defect arrangements in multifunctional magnèli titanium oxide hybrid systems: from energy conversion to water treatment

Author:

Liu Yichen12345,Yang Jack12345ORCID,Liu Yang12345,Zheng Jian12345,Lee Wen12345,Shi Junjie12345,Horlyck Jonathan6345,Xie Jiangzhou745,Tay Yee Yan891011,Tan Thiam Teck12345,Yu Dehong12135,Mole Richard12135,McIntyre Garry12135,Zhang Changyong745,Toe Cui Ying6345ORCID,Waite T. David745ORCID,Scott Jason6345ORCID,Wang Yu1445,Wu Tom12345ORCID,Han Shenghao15161718,Li Sean12345ORCID

Affiliation:

1. UNSW Materials and Manufacturing Futures Institute

2. School of Material Science and Engineering

3. The University of New South Wales

4. Kensington

5. Australia

6. School of Chemical Engineering

7. UNSW Water Research Centre, School of Civil and Environmental Engineering, The University of New South Wales

8. School of Materials Science and Engineering

9. Nanyang Technological University

10. Singapore 639798

11. Singapore

12. Australian Nuclear Science and Technology Organization

13. New Illawarra Road

14. Mark Wainwright Analytical Centre, The University of New South Wales

15. Department of Physics

16. Shandong University

17. Jinan

18. P. R. China

Abstract

This work demonstrates that the layer structured Magnèli titanium oxides possess co-existing functionalities, which can be applied to both energy harvesting and water treatment using one material.

Funder

Australian Research Council

Australian Nuclear Science and Technology Organisation

Publisher

Royal Society of Chemistry (RSC)

Subject

Pollution,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment,Environmental Chemistry

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