Back to Search Start Over

Zeolitic-imidazolate-framework-derived Co@Co3O4 embedded into iron, nitrogen, sulfur Co-doped reduced graphene oxide as efficient electrocatalysts for overall water splitting and zinc-air batteries.

Authors :
Zhu, Junke
Tu, Wenmao
Bai, Ziyu
Pan, Hongfei
Ji, Pengxia
Zhang, Heng
Deng, Zhao
Zhang, Haining
Source :
Electrochimica Acta. Nov2019, Vol. 323, pN.PAG-N.PAG. 1p.
Publication Year :
2019

Abstract

Rational design and fabrication of nonprecious metallic multifunctional catalysts with superior performance are crucial for energy-related electrochemical devices. Herein, we report the synthesis and electrochemical properties of a sandwich-like Co@Co 3 O 4 embedded into Fe, N, S co-doped reduced graphene oxide (Co@Co 3 O 4 /FeNS-RGO) nanocomposite catalyst. The designed Co@Co 3 O 4 /FeNS-RGO catalyst is synthesized by pyrolysis of one-pot solvothermal method-induced nano-zeolitic imidazolate framework (ZIF)/graphene oxide nanocomposite using dimethylsulfoxide as both the solvent and sulfur source. The synthesized catalyst exhibits the outstanding electrocatalytic activity in basic media for oxygen reduction reaction and oxygen evolution reactions, which outperforms the commercial Pt/C and IrO 2 catalysts, respectively. In addition, the synthesized catalyst also shows a promising electrocatalytic activity towards hydrogen evolution reaction. The performance of the thus-assembled zinc-battery and the overall water-splitting device reveals that the synthesized Co@Co 3 O 4 /FeNS-RGO can be practically applied in energy-related electrochemical devices with great activity and stability. Image 1 • Sandwich-like Co@Co 3 O 4 /FeNS-RGO nanocomposite catalyst was synthesized. • The formed catalysts exhibited outstanding electrocatalytic activity for ORR, OER, and HER. • The formed catalyst was applied in an overall water splitting device. • The assembled zinc-air battery delivered a power density of 181 mWcm−2. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00134686
Volume :
323
Database :
Academic Search Index
Journal :
Electrochimica Acta
Publication Type :
Academic Journal
Accession number :
138755727
Full Text :
https://doi.org/10.1016/j.electacta.2019.134821