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用于高电流密度碱性水电解槽中氧气析出的镍基电催化剂。

Nickel based electrocatalysts for oxygen evolution in high current density, alkaline water electrolysers.

机构信息

Electrochemical Engineering Laboratory, School of Engineering Sciences, University of Southampton, Southampton, SO17 1BJ, UK.

出版信息

Phys Chem Chem Phys. 2011 Jan 21;13(3):1162-7. doi: 10.1039/c0cp00993h. Epub 2010 Nov 15.

Abstract

A number of nickel based materials are investigated as potential oxygen evolution catalysts under conditions close to those met in modern, high current density alkaline water electrolysers. Microelectrodes are used to avoid distortion of voltammetric data by IR drop even at the high current densities employed in such water electrolysers. High surface area nickel metal oxides prepared by cathodic deposition and mixed oxides prepared by thermal methods are considered. A mixed Ni/Fe oxide is the preferred electrocatalyst. The influence of hydroxide ion concentration and temperature on the voltammetry is defined. Preliminary stability tests in a zero gap cell with an OH(-) conducting membrane show no significant increase in overpotential during 10 days operation in 4 M NaOH electrolyte at a current density of 1 A cm(-2) at 333 K.

摘要

研究了多种镍基材料,作为在现代高电流密度碱性水电解器中接近的条件下潜在的析氧催化剂。使用微电极来避免即使在高电流密度下也会因 IR 降而导致的伏安数据失真,这种水电解器中使用的电流密度很高。考虑了通过阴极沉积制备的高表面积镍金属氧化物和通过热方法制备的混合氧化物。混合的 Ni/Fe 氧化物是优选的电催化剂。定义了氢氧根离子浓度和温度对伏安法的影响。在具有 OH(-)传导膜的零间隙电池中的初步稳定性测试表明,在 333 K 时电流密度为 1 A cm(-2)的 4 M NaOH 电解质中运行 10 天时,过电位没有明显增加。

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