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Highly Efficient Electrocatalytic Reduction of CO2 to CO by a Molecular Chromium Complex

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Figshare2019-12-10 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Highly_Efficient_Electrocatalytic_Reduction_of_CO_sub_2_sub_to_CO_by_a_Molecular_Chromium_Complex/11469900
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Earth-abundant transition-metal catalysts capable of reducing CO2 to useful products have been gaining attention to meet increasing energy demands and address concerns of rising CO2 emissions. Group 6 molecular compounds remain underexplored in this context relative to other transition metals. Here, we present a molecular chromium complex with a 2,2′-bipyridine-based ligand capable of selectively transforming CO2 into CO with phenol as a sacrificial proton donor at turnover frequencies of 5.7 ± 0.1 s–1 with a high Faradaic efficiency (96 ± 8%) and a low overpotential (110 mV). To achieve the reported catalytic activity, the parent Cr­(III) species is reduced by two electron equivalents, suggesting an approximate d5 active species configuration. Although previous results have suggested that low-valent species from the Cr/Mo/W triad are nonprivileged for CO2 reduction in synthetic molecular systems, the results presented here suggest that reactivity analogous to late transition metals is possible with early transition metals.
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2019-12-10
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