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生长在泡沫镍上具有一维-二维-三维异质结构的锰调制钴基层状双氢氧化物用于高效析氧反应和尿素氧化反应

Manganese-Modulated Cobalt-Based Layered Double Hydroxide Grown on Nickel Foam with 1D-2D-3D Heterostructure for Highly Efficient Oxygen Evolution Reaction and Urea Oxidation Reaction.

作者信息

Wang Zhaolong, Hu Yiming, Liu Wenjun, Xu Li, Guan Meili, Zhao Yan, Bao Jian, Li Huaming

机构信息

School of Chemistry and Chemical Engineering, Institute for Energy Research, Jiangsu University, Zhenjiang, Jiangsu, 212013, P. R. China.

出版信息

Chemistry. 2020 Jul 27;26(42):9382-9388. doi: 10.1002/chem.202001055. Epub 2020 Jun 12.

DOI:10.1002/chem.202001055
PMID:32304252
Abstract

Hydrogen production by energy-efficient water electrolysis is a green avenue for the development of contemporary society. However, the oxygen evolution reaction (OER) and the urea oxidation reaction (UOR) occurring at the anode are impeded by the sluggish reaction kinetics during the water-splitting process. Consequently, it is promising to develop bifunctional anodic electrocatalysts consisting of nonprecious metals. Herein, a bifunctional CoMn layered double hydroxide (LDH) was grown on nickel foam (NF) with a 1D-2D-3D hierarchical structure for efficient OER and UOR performance in alkaline solution. Owing to the significant synergistic effect of Mn doping and heterostructure engineering, the obtained Co Mn LDH/NF exhibits satisfactory OER activity with a low potential of 1.515 V to attain 10 mA cm . Besides, the potential of the Co Mn LDH/NF catalyst for UOR at the same current density is only 1.326 V, which is much lower than those of its counterparts and most reported electrocatalysts. An urea electrolytic cell with a Co Mn LDH/NF anode and a Pt-C/NF cathode was established, and a low cell voltage of 1.354 V at 10 mA cm was acquired. The optimized strategy may result in promising candidates for developing a new generation of bifunctional electrocatalysts for clean energy production.

摘要

通过节能水电解制氢是当代社会发展的一条绿色途径。然而,在水分解过程中,阳极发生的析氧反应(OER)和尿素氧化反应(UOR)受到缓慢反应动力学的阻碍。因此,开发由非贵金属组成的双功能阳极电催化剂具有广阔前景。在此,一种具有1D-2D-3D分级结构的双功能CoMn层状双氢氧化物(LDH)生长在泡沫镍(NF)上,以在碱性溶液中实现高效的OER和UOR性能。由于Mn掺杂和异质结构工程的显著协同效应,所制备的CoMn LDH/NF表现出令人满意的OER活性,在1.515 V的低电位下可达到10 mA cm 。此外,CoMn LDH/NF催化剂在相同电流密度下的UOR电位仅为1.326 V,远低于其同类产品和大多数已报道的电催化剂。构建了一个以CoMn LDH/NF为阳极、Pt-C/NF为阴极的尿素电解池,在10 mA cm 时获得了1.354 V的低电池电压。该优化策略可能为开发新一代用于清洁能源生产的双功能电催化剂带来有前景的候选材料。

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