Issue 21, 2022

Interface engineering of Co-CoMoSx heterostructure nanosheets for an efficient alkaline oxygen evolution reaction

Abstract

It is very essential to develop inexpensive and efficient oxygen evolution catalysts for water splitting. Interface engineering can modify the local electronic structure of active sites, which is one of the important ways to enhance catalytic activity. Herein, we prepared Co-CoMoSx heterostructure nanosheet arrays by a two-step hydrothermal method. Because of the strong electronic interaction between the components of Co-CoMoSx, Co-CoMoSx nanosheet arrays show an outstanding electrocatalytic oxygen evolution performance (Tafel slope b = 64.79 mV dec−1, η100 = 292 mV, η1000 = 402 mV) and remarkable stability in alkaline solution. Remarkably, the Co-CoMoSx‖PS-MoNi (phase-separated Mo–Ni alloy) electrolytic cell can facilitate water splitting at a low voltage of 1.48 V to deliver a current density of 10 mA cm−2 and exhibits durability for up to 150 hours. This study puts forward a promising direction for the synthesis of high performance heterostructure catalysts for oxygen evolution.

Graphical abstract: Interface engineering of Co-CoMoSx heterostructure nanosheets for an efficient alkaline oxygen evolution reaction

Supplementary files

Article information

Article type
Paper
Submitted
26 Jul 2022
Accepted
25 Sep 2022
First published
07 Oct 2022

Sustainable Energy Fuels, 2022,6, 4970-4981

Interface engineering of Co-CoMoSx heterostructure nanosheets for an efficient alkaline oxygen evolution reaction

X. Mao, Z. Liu, H. Feng, Z. Chen and P. K. Shen, Sustainable Energy Fuels, 2022, 6, 4970 DOI: 10.1039/D2SE01032A

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