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首页> 外文期刊>Nano: brief reports and reviews >Preparation of Porous Ni-Cu Alloy Electrodes and their Electrocatalytic Performance as Cathode for Hydrogen Evolution Reaction in Alkaline Solution
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Preparation of Porous Ni-Cu Alloy Electrodes and their Electrocatalytic Performance as Cathode for Hydrogen Evolution Reaction in Alkaline Solution

机译:碱性溶液中氢进化反应阴极的多孔Ni-Cu合金电极的制备及其电催化性能

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摘要

Porous Ni-Cu alloy electrodes were conveniently fabricated by galvanic displacement reaction (GDR) between Ni foam and copper ion in copper ion solutions, followed by cyclic voltammetry (CV) treatment to form a hierarchical microstructure. The electrocatalytic performance of prepared electrodes in terms of the hydrogen evolution reaction (HER) was investigated in a 1 mol/L KOH solution at room temperature. Di r erent copper ion solutions were tested to determine the best copper ion solution and the optimum GDR time, and experimental results show that all cathodes obtained by GDR between Ni foam and copper ion exhibit a superior HER activity over the pure Ni foam cathode, while the HER activity of electrode obtained by GDR between Ni foam and copper ion in 0.5 mol/L CuCl2 solutions for 1 h is the highest. Furthermore, it is found that the HER activity of electrode obtained by GDR between Ni foam and copper ion in 0.5 mol/L CuCl2 solutions for 1 h can be further enhanced through a CV treatment and the optimal number of CV cycles is 3, which can be attributed to a hierarchical microstructure (a needle-like nano-microstructure formed on the surface of the electrode during the CV treatment process).
机译:通过在铜离子溶液中的Ni泡沫和铜离子之间的电催化反应(GDR)方便地制造多孔的Ni-Cu合金电极,然后通过环状伏安法(CV)处理形成分层微观结构。在室温下在1mol / L KOH溶液中研究了制备电极的电催化性能。在室温下在1mol / L KOH溶液中研究。测试DI R切除铜离子溶液以确定最佳的铜离子溶液和最佳GDR时间,实验结果表明,Ni泡沫和铜离子之间GDR获得的所有阴极在纯Ni泡沫阴极上表现出优异的她的活性,同时通过在0.5mol / L CuCl 2溶液中的Ni泡沫和铜离子之间的GDR获得的电极活性最高。此外,发现通过CV处理进一步增强了通过在0.5mol / L CuCl 2溶液中通过GDR之间获得的电极的活性,并通过CV处理进一步增强,并且最佳的CV循环数为3,可以归因于分层微结构(在CV处理过程中形成在电极表面上的针状纳米微结构)。

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