Issue 21, 2023

Flaky Co3O4/BCNO composites as efficient and stable catalysts for the oxygen reduction reaction

Abstract

Much effort has been devoted to developing efficient, stable, and low-cost catalysts for the oxygen reduction reaction (ORR). Herein, we prepared flaky Co3O4/BCNO composites as efficient ORR catalysts with one step of the precursor sintering method. BCNO nanosheets were obtained by doping C and O elements into hexagonal boron nitride. They can effectively prevent the agglomeration of Co3O4 and stimulate the catalytic activity through electronic interactions. The half-wave potential of the Co3O4/BCNO catalyst can be up to 0.84 V (vs. RHE) which is superior to those of Co3O4 and commercial Pt/C (20%). The Co3O4/BCNO composite has a faster kinetic reaction rate with a Tafel slope of 44.9 mV dec−1, which is lower than those of Pt/C (91.85 mV dec−1) and Co3O4 (82.6 mV dec−1). The Co3O4/BCNO composite catalyst also has excellent stability and good methanol tolerance. The Co3O4/BCNO composite-based Zn–air battery exhibits high power density and specific capacity.

Graphical abstract: Flaky Co3O4/BCNO composites as efficient and stable catalysts for the oxygen reduction reaction

Supplementary files

Article information

Article type
Paper
Submitted
14 Mar 2023
Accepted
26 Apr 2023
First published
27 Apr 2023

New J. Chem., 2023,47, 10255-10264

Flaky Co3O4/BCNO composites as efficient and stable catalysts for the oxygen reduction reaction

Y. Zhang, Z. Zang, X. Li, P. Yang, J. Zhang, L. Li, X. Yu, X. Yang, Z. Lu and X. Zhang, New J. Chem., 2023, 47, 10255 DOI: 10.1039/D3NJ01204B

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