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Fe-substituted cobalt-phosphate polyoxometalates as enhanced oxygen evolution catalysts in acidic media 被引量:4
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作者 Xin-Bao Han Dong-Xue Wang +7 位作者 eduardo gracia-espino Yu-Hui Luo Yuan-Zhi Tan Dong-Fei Lu Yang-Guang Li Thomas Wagberg En-Bo Wang Lan-Sun Zheng 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第5期853-857,共5页
All-inorganic and earth-abundant bi-/trimetallic hydr(oxy)oxides are widely used as oxygen evolution electrocatalysts owing to their remarkable performance.However,their atomically precise structures remain undefined,... All-inorganic and earth-abundant bi-/trimetallic hydr(oxy)oxides are widely used as oxygen evolution electrocatalysts owing to their remarkable performance.However,their atomically precise structures remain undefined,complicating their optimization and limiting the understanding of their enhanced performance.Here,the underlying structure-property correlation is explored by using a well-defined cobalt-phosphate polyoxometalate cluster [{(Co4)(OH)3(PO4)}4(SiW9 O34)4]^32-(1),which may serve as a molecular model of multimetal hydr(oxy)oxides.The catalytic activity is enhanced upon replacing Co by Fe in 1,resulting in a reduced overpotential(385 mV) for oxygen evolution(by 66 mV) compared to that of the parent 1 at 10 mA cm^-2 in an acidic medium;this overpotential is comparable to that for the IrO2 catalyst These abundant-metal-based polyoxometalates exhibit high stability,with no evidence of degradation even after 24 h of operation. 展开更多
关键词 Colbalt-phosphate POLYOXOMETALATE Oxygen evolution reaction Isostructural substitution
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