析氧
化学
电解质
无定形固体
催化作用
锂钴氧化物
电化学
尖晶石
氧化物
氧化钴
锂(药物)
无机化学
电池(电)
氧气
钴
过渡金属
化学工程
磷酸盐
电极
锂离子电池
物理化学
冶金
材料科学
结晶学
有机化学
内分泌学
工程类
功率(物理)
量子力学
医学
物理
作者
Seung Woo Lee,Christopher E. Carlton,Marcel Risch,Yogesh Surendranath,Shuo Chen,Sho Furutsuki,Atsuo Yamada,Daniel G. Nocera,Yang Shao‐Horn
摘要
Transition-metal oxide and phosphate materials, commonly used for lithium battery devices, are active as oxygen evolution reaction (OER) catalysts under alkaline and neutral solution conditions. Electrodes composed of LiCoO2 and LiCoPO4 exhibit progressive deactivation and activation for OER catalysis, respectively, upon potential cycling at neutral pH. The deactivation of LiCoO2 and activation of LiCoPO4 are coincident with changes in surface morphology and composition giving rise to spinel-like and amorphous surface structures, respectively. The amorphous surface structure of the activated LiCoPO4 is compositionally similar to that obtained from the electrodeposition of cobalt oxide materials from phosphate-buffered electrolyte solutions. These results highlight the importance of a combined structural and electrochemical analysis of the materials surface when assessing the true nature of the OER catalyst.
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