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设计分级铁掺杂氢氧化镍钒微球作为析氧反应的高效电催化剂。

Designing hierarchical iron doped nickel-vanadium hydroxide microsphere as an efficient electrocatalyst for oxygen evolution reaction.

作者信息

Deng Yaoyao, Lu Yidong, Dai Rentong, Xiang Mei, Zhang Zhenwei, Zhang Xiaoli, Zhou Quanfa, Gu Hongwei, Bai Jirong

机构信息

Research Center of Secondary Resources and Environment, School of Chemical Engineering and Materials, Changzhou Institute of Technology, Changzhou 213032, China.

Key Laboratory of Organic Synthesis of Jiangsu Province, College of Chemistry, Chemical Engineering and Materials Science & Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou 215123, P. R. China.

出版信息

J Colloid Interface Sci. 2022 Dec;627:215-223. doi: 10.1016/j.jcis.2022.07.060. Epub 2022 Jul 14.

Abstract

Exploring highly active and inexpensive electrocatalysts for oxygen evolution reaction (OER) is considered to be one of the preconditions for the development of energy and environment-related technologies. Nickel-based layered double hydroxides (LDHs) are extensively-studied OER electrocatalysts, but they still require relatively high overpotentials to achieve threshold current densities. In this work, iron-doped nickel-vanadium hydroxide microspheres (Fe-doped NiV HMS) were synthesized by doping iron ions into the NiV HMS through a facile cation-exchange method. The Fe-doped NiV HMS are hollow hierarchical structure stacked by high-density perpendicularly-lying nanosheets, which provide enough space for electrolyte penetration and diffusion. Owing to optimized composition and hollow hierarchical structure, the Fe-doped NiV HMS exhibits excellent electrocatalytic performance, which possessed a very low running overpotential (255 mV at 10 mA cm) and a smallest Tafel slope (56 mV dec) compared with hierarchical NiV HMS toward OER. Electrochemical results and density functional theory (DFT) manifest that Fe doping could regulate the electronic structure of NiV HMS, thus improving its electrical conductivity and electron transfer rate, and thus enhancing its catalytic activity. This research provides a convenient way to prepare Ni-based hydroxides as promising OER catalysts.

摘要

探索用于析氧反应(OER)的高活性且廉价的电催化剂被认为是能源与环境相关技术发展的前提条件之一。镍基层状双氢氧化物(LDHs)是被广泛研究的OER电催化剂,但它们仍需要相对较高的过电位才能达到阈值电流密度。在这项工作中,通过简便的阳离子交换法将铁离子掺杂到镍钒氢氧化物微球(NiV HMS)中,合成了铁掺杂的镍钒氢氧化物微球(Fe掺杂的NiV HMS)。Fe掺杂的NiV HMS是由高密度垂直排列的纳米片堆叠而成的中空分级结构,为电解质的渗透和扩散提供了足够的空间。由于组成和中空分级结构得到优化,Fe掺杂的NiV HMS表现出优异的电催化性能,与分级NiV HMS相比,其在析氧反应中具有非常低的运行过电位(在10 mA cm时为255 mV)和最小的塔菲尔斜率(56 mV dec)。电化学结果和密度泛函理论(DFT)表明,Fe掺杂可以调节NiV HMS的电子结构,从而提高其电导率和电子转移速率,进而增强其催化活性。本研究为制备作为有前景的OER催化剂的镍基氢氧化物提供了一种简便方法。

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