Unraveling the Potential-Dependent Volcanic Selectivity Changes of an Atomically Dispersed Ni Catalyst During CO2 Reduction
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作者
Mei, Bingbao; Liu, Cong; Sun, Fanfei; Lu, Siyu; Du, Xianlong; Li, Xiaopeng; Song, Fei; Xu, Weilin; Jiang, Zheng
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刊物名称
ACS CATALYSIS
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年、卷、文献号
2022, 12, 2155-5435
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关键词
Mei, Bingbao; Liu, Cong; Sun, Fanfei; Lu, Siyu; Du, Xianlong; Li, Xiaopeng; Song, Fei; Xu, Weilin; Jiang, Zheng
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摘要
Potential-dependent selectivity changes exist widely in electrocatalysis. However, an atomistic view of such changes remains a vital missing piece of the puzzle. Here, we employ a model atomically dispersed nickel catalyst to obtain the first full view of potential-induced structure changes at an atomic level during the electrochemical CO2 reduction reaction. The model catalyst consists of a single Ni site coordinated with pyrrole nitrogen in the form of Ni-N-4, as confirmed by comprehensive X-ray absorption spectroscopy (XAS) analyses. The catalyst exhibits typical potential-dependent volcanolike selectivity changes. Operando XAS revealed that the peak similar to 99% CO selectivity is achieved when the distance between the Ni atom and the carbon basal plane reaches an optimal distance of similar to 0.1 angstrom in the potential range of -0.5 to -0.8 V (vs RHE). The selectivity drops as the distance changes, induced by a potential shift. Theoretical calculations suggested that local dynamic behaviors directly regulate the distribution of the d band center of Ni. Our work provides a clear quantitative correlation between the dynamic configuration and the catalytic properties, which should benefit the future design of atomically dispersed catalysts.