钴酸盐
催化作用
氧气
电化学
可逆氢电极
氢
尖晶石
氧化还原
化学工程
化学
材料科学
无机化学
电极
工作电极
冶金
物理化学
有机化学
工程类
生物化学
作者
Dongwook Lim,Hyungseok Kong,Chaewon Lim,Nam Il Kim,Sang Eun Shim,Sung‐Hyeon Baeck
标识
DOI:10.1016/j.ijhydene.2019.07.091
摘要
Spinel-type nickel cobaltite with numerous oxygen vacancies is successfully synthesized by hydrothermal and thermal reduction using hydrogen. The effects of oxygen vacancies on the electrochemical activity and stability for the oxygen reduction reaction are investigated. The prepared catalyst displays significantly enhanced oxygen reduction reaction (ORR) catalytic performance under alkaline conditions, which is comparable to that of commercial Pt/C. The oxygen-deficient NiCo2O4 exhibits a very high limiting current density of −5.44 mA cm−2 with onset and half-wave potentials of 0.93 and 0.78 V versus the reversible hydrogen electrode (RHE), respectively. Additionally, it shows excellent durability and resistance to methanol. The enhanced ORR activity and stability of the catalyst can be ascribed to the synergistic effects of the relatively large electrochemical surface area, more exposed active sites, and good electrical conductivity derived from abundant oxygen vacancies.
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