Multi-porous Co3O4 nanoflakes @ sponge-like few-layer partially reduced graphene oxide hybrids: towards highly stable asymmetric supercapacitors

Author:

Qorbani Mohammad1234ORCID,Chou Tsu-chin5678,Lee Yi-Hsin91078,Samireddi Satyanarayana111213814,Naseri Naimeh123415,Ganguly Abhijit141678,Esfandiar Ali11718419,Wang Chen-Hao91078ORCID,Chen Li-Chyong5678ORCID,Chen Kuei-Hsien567814ORCID,Moshfegh Alireza Z.123420ORCID

Affiliation:

1. Department of Physics

2. Sharif University of Technology

3. Tehran 11155-9161

4. Iran

5. Center for Condensed Matter Sciences (CCMS)

6. National Taiwan University

7. Taipei 10617

8. Taiwan

9. Department of Material Sciences and Engineering

10. National Taiwan University of Science and Technology

11. Department of Chemistry

12. National Tsing Hua University

13. Hsinchu 30013

14. Institute of Atomic and Molecular Sciences (IAMS)

15. Condensed Matter National Laboratory (CMNL)

16. Academia Sinica

17. Kharazmi University

18. Tehran 15719-14911

19. School of Physics and Astronomy

20. Institute for Nanoscience and Nanotechnology

Abstract

Co3O4 nanoflakes show fast rate capability and superior stability due to the conductivity and well-tuned porosity of spongy-like reduced graphene oxide networks.

Publisher

Royal Society of Chemistry (RSC)

Subject

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

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