电催化剂
催化作用
尿素
无机化学
钙钛矿(结构)
材料科学
阳极
镍
化学工程
化学
制氢
拉尼奥
电化学
电极
冶金
有机化学
物理化学
电介质
工程类
铁电性
光电子学
作者
Robin P. Forslund,J. Tyler Mefford,William G. Hardin,Caleb T. Alexander,Keith P. Johnston,Keith J. Stevenson
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2016-06-24
卷期号:6 (8): 5044-5051
被引量:237
标识
DOI:10.1021/acscatal.6b00487
摘要
Urea electrooxidation has attracted considerable interest as an alternative anodic reaction in the electrochemical generation of hydrogen due to both the lower electrochemical potential required to drive the reaction and also the possibility of eliminating a potentially harmful substance from wastewater during hydrogen fuel production. Nickel and nickel-containing oxides have shown activities comparable to those of precious-metal catalysts for the electrooxidation of urea in alkaline conditions. Herein, we investigate the use of nanostructured LaNiO3 perovskite supported on Vulcan carbon XC-72 as an electrocatalyst. This catalyst exhibits an exceptionally high mass activity of ca. 371 mA mgox–1 and specific activity of 2.25 A mg–1 cmox–2 for the electrooxidation of urea in 1 M KOH, demonstrating the potential applications of Ni-based perovskites for direct urea fuel cells and low-energy hydrogen production. While LaNiO3 is shown to be stable at low overpotentials, through in-depth mechanistic studies the catalyst surface was observed to restructure and there was apparent CO2 poisoning of the LaNiO3 upon extended cycling, a result that may be extended to other Ni-based systems.
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