Poly(carbazole)-based anion-conducting materials with high performance and durability for energy conversion devices

Author:

Cha Min Suc1234,Park Ji Eun56748,Kim Sungjun56748ORCID,Han Seung-Hui1234,Shin Sang-Hun1234,Yang Seok Hwan12349,Kim Tae-Ho1234ORCID,Yu Duk Man1234ORCID,So Soonyong1234ORCID,Hong Young Taik1234,Yoon Sang Jun1234,Oh Seong-Geun9104,Kang Sun Young56748,Kim Ok-Hee1112134,Park Hyun S.141516174,Bae Byungchan1819204ORCID,Sung Yung-Eun56748ORCID,Cho Yong-Hun567421,Lee Jang Yong1234ORCID

Affiliation:

1. Energy Materials Research Center

2. Korea Research Institute of Chemical Technology (KRICT)

3. Daejeon 34114

4. Republic of Korea

5. Center for Nanoparticle Research

6. Institute for Basic Science (IBS)

7. Seoul 08826

8. School of Chemical and Biological Engineering and Institute of Chemical Processes (ICP)

9. Department of Chemical Engineering, Hanyang University

10. Seoul 04763

11. Department of Science

12. Republic of Korea Naval Academy

13. Changwon 51704

14. Fuel Cell Research Center

15. Korea Institute of Science and Technology (KIST)

16. Seongbuk-gu

17. Seoul

18. Fuel Cell Laboratory

19. Korea Institute of Energy Research (KIER)

20. Daejeon 34129

21. Department of Chemical Engineering, Kangwon National University

Abstract

An aryl ether-free less-phenyl adsorbing poly-carbazole-based polymer shows superior performance and durability for anion exchange membrane fuel cells and electrolyzers.

Funder

National Research Foundation of Korea

Institute for Basic Science

Korea Research Council for Industrial Science and Technology

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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