Anion-exchange membranes in electrochemical energy systems

Author:

Varcoe John R.123,Atanassov Plamen456,Dekel Dario R.789,Herring Andrew M.101112,Hickner Michael A.131415,Kohl Paul. A.161718,Kucernak Anthony R.11920,Mustain William E.212223,Nijmeijer Kitty24252627,Scott Keith2829303132,Xu Tongwen33343536,Zhuang Lin13738

Affiliation:

1. Department of Chemistry

2. University of Surrey

3. Guildford, UK

4. Department of Chemical and Nuclear Engineering

5. University of New Mexico

6. Albuquerque, USA

7. CellEra

8. Caesarea Business and Industrial Park

9. Caesarea, Israel

10. Department of Chemical and Biological Engineering

11. Colorado School of Mines

12. Golden, USA

13. Department of Materials Science and Engineering

14. The Pennsylvania State University

15. University Park, PA, USA

16. School of Chemical and Biomolecular Engineering

17. Georgia Institute of Technology

18. Atlanta, USA

19. Imperial College London

20. London, UK

21. Department of Chemical & Biomolecular Engineering

22. University of Connecticut

23. Storrs, USA

24. Membrane Science and Technology

25. University of Twente

26. MESA+ Institute for Nanotechnology

27. Enschede, The Netherlands

28. School of Chemical Engineering and Advanced Materials

29. Faculty of Science

30. Agriculture and Engineering

31. Newcastle University

32. Newcastle upon Tyne, UK

33. School of Chemistry and Material Science

34. USTC-Yongjia Membrane Center

35. University of Science and Technology of China

36. Hefei, 230026 P. R. China

37. Wuhan University

38. Wuhan, P. R. China

Abstract

A detailed perspective on the use of anion-exchange membranes in fuel cells, electrolysers, flow batteries, reverse electrodialysis, and bioelectrochemical systems.

Funder

Engineering and Physical Sciences Research Council

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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