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生长在泡沫镍上的花状Fe-Co-M(M = S、O、P和Se)纳米片阵列作为高效双功能电催化剂

Flower-like Fe-Co-M (M=S, O, P and Se) Nanosheet Arrays Grown on Nickel Foam as High-efficiency Bifunctional Electrocatalysts.

作者信息

Ma Guangyu, Du Xiaoqiang, Zhang Xiaoshuang

机构信息

School of Chemical Engineering and Technology, North University of China, Taiyuan, 030051, P. R. China.

School of Science, North University of China, Taiyuan, 030051, P. R. China.

出版信息

Chem Asian J. 2021 Apr 19;16(8):959-965. doi: 10.1002/asia.202100069. Epub 2021 Mar 15.

DOI:10.1002/asia.202100069
PMID:33660405
Abstract

The development of highly efficient, inexpensive, abundant and non-precious metal electrocatalysts is the lifeblood of the hydrogen production industry, especially the hydrogen production industry by electrolysis of water. A Fe-Co-S/NF bifunctional electrocatalyst with nanoflower-like structure was synthesized on three-dimensional porous nickel foam through one-step hydrothermal and one-step high-temperature sulfuration operations, and the material displays high-efficiency electrocatalytic performance. As a catalyst for the hydrogen evolution reaction, Fe-Co-S/NF can drive a current density of 10 mA/cm at an overpotential of 143 mV with a Tafel slope of 80.2 mV/dec. When it was used as an oxygen evolution reaction catalyst, it exhibits good OER reactivity with a low Tafel slope (82.6 mV/dec) and with requiring only 117 mV overpotential to drive current densities up to 50 mA/cm . In addition, the Fe-Co-S/NF//Fe-Co-S/NF electrolytic cell was assembled, an electrolysis voltage of 1.64 V is required to drive a current density of 50 mA/cm , which is one of the most active catalysts reported so far. This work indicates that the introduction of S, P and Se treating processes could effectively improve electrical conductivity of the material and enhance the catalytic activity of the material. This work offers an effective and convenient method for improving the morphology of the catalyst, increasing the surface area of the catalyst and developing high-efficiency and low-cost catalysts.

摘要

开发高效、廉价、丰富且非贵金属的电催化剂是制氢工业的命脉,尤其是水电解制氢工业。通过一步水热和一步高温硫化操作,在三维多孔泡沫镍上合成了具有纳米花状结构的Fe-Co-S/NF双功能电催化剂,该材料显示出高效的电催化性能。作为析氢反应的催化剂,Fe-Co-S/NF在143 mV的过电位下可驱动10 mA/cm²的电流密度,塔菲尔斜率为80.2 mV/dec。当用作析氧反应催化剂时,它表现出良好的OER反应活性,塔菲尔斜率低(82.6 mV/dec),驱动电流密度高达50 mA/cm²仅需117 mV的过电位。此外,组装了Fe-Co-S/NF//Fe-Co-S/NF电解池,驱动50 mA/cm²的电流密度需要1.64 V的电解电压,这是迄今为止报道的最具活性的催化剂之一。这项工作表明,引入S、P和Se处理工艺可以有效提高材料的电导率并增强材料的催化活性。这项工作为改善催化剂的形貌、增加催化剂的表面积以及开发高效低成本催化剂提供了一种有效且便捷的方法。

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