Controlled chelation between tannic acid and Fe precursors to obtain N, S co-doped carbon with high density Fe-single atom-nanoclusters for highly efficient oxygen reduction reaction in Zn–air batteries

Author:

Li Hong1234,Du Kai56789,Xiang Chensheng56789,An Pengfei101112134,Shu Xinxin14234,Dang Yaru1516171218,Wu Chenshuo1234,Wang Jin1234,Du Wei19202122ORCID,Zhang Jintao14234ORCID,Li Shenggang1516171218ORCID,Tian He56789ORCID,Wang Shuangyin2324252627ORCID,Xia Haibing1234ORCID

Affiliation:

1. State Key Laboratory of Crystal Materials

2. Shandong University

3. Jinan

4. P. R. China

5. Center of Electron Microscope

6. State Key Laboratory of Silicon Materials

7. School of Materials Science and Engineering

8. Zhejiang University

9. Hangzhou

10. Beijing Synchrotron Radiation Facility

11. Institute of High Energy Physics

12. Chinese Academy of Sciences

13. Beijing

14. School of Chemistry and Chemical Engineering

15. Low-Carbon Conversion Center

16. CAS Key Laboratory of Low-Carbon Conversion Science and Engineering

17. Shanghai Advanced Research Institute

18. Shanghai

19. School of Environment and Materials Engineering

20. Yantai University

21. Yantai 264005

22. China

23. State Key Lab of Chemo/Bio-Sensing and Chemometrics

24. Provincial Hunan Key Laboratory for Graphene Materials and Devices

25. College of Chemistry and Chemical Engineering

26. Hunan University

27. Changsha

Abstract

Porous carbon with Fe-single-atom nanoclusters was obtained for the ORR by controlled chelation between tannic acid and Fe precursors.

Funder

National Natural Science Foundation of China

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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