Gold-based materials hold promise in electrocatalytic reduction of CO 2 to fuels. However, the polydispersity of conventional gold nanostructures limits mechanistic studies. Here, we report two types of atomically precise Au 25 nanoclusters (1 nm) with distinct morphology (i.e., nanosphere and nanorod) for CO 2 reduction catalysis. The Au 25 nanosphere exhibits higher Faradaic efficiency for CO with higher formation rates compared to the Au 25 nanorod. First-principles calculations reveal that the negative charge and the energetically favorable removal of one ligand to generate an active site on the nanosphere can better stabilize the important *COOH intermediate in CO 2 electroreduction.
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Zhao et al. (2018) studied this question.
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