Issue 32, 2022

Facile synthesis of cobalt cluster-CoNx composites: synergistic effect boosts electrochemical oxygen reduction

Abstract

Cobalt-based electrocatalysts have been well exploited in oxygen reduction reactions (ORR) for potential applications in alkaline-based fuel cells. In this study, we report a one-pot protocol to prepare facile Co/CoNx–C electrocatalysts, which are comprised of metallic Co0 clusters simultaneously integrated with CoIINx species on N-doped carbon matrixes. The optimized Co/CoNx–C exhibits high ORR activity in terms of Eonset (0.926 V vs. RHE) and E1/2 (0.853 V) and shows good stability and methanol tolerance compared with the benchmark Pt/C in an alkaline electrolyte. The enhanced ORR performance arises from the unique integration and synergetic effect of Co clusters with adjacent single-atomic CoNx sites in the resultant Co/CoNx–C electrocatalysts, which is further substantiated by density functional theory simulations. This scalable synthesis strategy provides a perspective for design of highly efficient non-noble metal electrocatalysts, encouraging extensive utilization for electrochemical energy conversion.

Graphical abstract: Facile synthesis of cobalt cluster-CoNx composites: synergistic effect boosts electrochemical oxygen reduction

Supplementary files

Article information

Article type
Paper
Submitted
02 Jun 2022
Accepted
23 Jul 2022
First published
28 Jul 2022

J. Mater. Chem. A, 2022,10, 16920-16927

Facile synthesis of cobalt cluster-CoNx composites: synergistic effect boosts electrochemical oxygen reduction

J. Zhang, Y. Xie, Q. Jiang, S. Guo, J. Huang, L. Xu, Y. Wang and G. Li, J. Mater. Chem. A, 2022, 10, 16920 DOI: 10.1039/D2TA04413G

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