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Visualizing atom-scale surface restructuring of Cu-based electrocatalyst in electrocatalytic CO_(2)reduction toward multicarbon product
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作者 Yun-Hao Song Heng-Rui Zhao +1 位作者 Wei Lu Hai-Qing Wang 《Rare Metals》 2025年第6期4309-4311,共3页
Electrocatalysis has been extensively explored for the storage and conversion of renewable electric power.Understanding the physisorption and chemisorption processes at electrified solid–liquid interfaces(ESLIs)is cr... Electrocatalysis has been extensively explored for the storage and conversion of renewable electric power.Understanding the physisorption and chemisorption processes at electrified solid–liquid interfaces(ESLIs)is crucial for revealing the typical surface restructuring and catalyst dissolution during electrocatalysis.Although advanced in situ tools and theoretical models have been proposed[1,2],identifying the nature of the active sites with atomic-scale spatial resolution remains a challenge,especially at ESLIs.In a recent work published in Nature,Zhang et al.[3]reported a groundbreaking atomic-resolution imaging of the structural dynamics of Cu nanowire catalysts in ESLIs for electrochemical CO_(2)reduction(ECR). 展开更多
关键词 nature active sites atom scale surface restructuring electrified solid liquid interfaces eslis theoretical models situ tools surface restructuring physisorption chemisorption processes renewable electric powerunderstanding
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