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首页> 外文期刊>Angewandte Chemie >Tuning of Silver Catalyst Mesostructure Promotes Selective Carbon Dioxide Conversion into Fuels
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Tuning of Silver Catalyst Mesostructure Promotes Selective Carbon Dioxide Conversion into Fuels

机译:银催化剂介观结构的调整促进选择性二氧化碳转化为燃料

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摘要

An electrode's performance for catalytic CO2 conversion to fuels is a complex convolution of surface structure and transport effects. Using well-defined mesostructured silver inverse opal (Ag-IO) electrodes, it is demonstrated that mesostructure-induced transport limitations alone serve to increase the turnover frequency for CO2 activation per unit area, while simultaneously improving reaction selectivity. The specific activity for catalyzed CO evolution systematically rises by three-fold and the specific activity for catalyzed H-2 evolution systematically declines by ten-fold with increasing mesostructural roughness of Ag-IOs. By exploiting the compounding influence of both of these effects, we demonstrate that mesostructure, rather than surface structure, can be used to tune CO evolution selectivity from less than 5% to more than 80%. These results establish electrode mesostructuring as a powerful complementary tool for tuning both catalyst selectivity and efficiency for CO2 conversion into fuels.
机译:电极将二氧化碳催化转化为燃料的性能是表面结构和传输效应的复杂综合。使用定义明确的介孔结构银反蛋白石(Ag-10)电极,证明介孔结构引起的传输限制本身可增加单位面积CO2活化的周转频率,同时提高反应选择性。随着AgIOs介观结构粗糙度的增加,用于催化CO释放的比活性系统性地增加了三倍,而用于催化H-2释放的比活性系统性地降低了十倍。通过利用这两种影响的复合影响,我们证明了介观结构而不是表面结构可用于将CO生成选择性从不到5%调整到超过80%。这些结果将电极介观结构化为一种强大的辅助工具,可用于调节催化剂的选择性和将二氧化碳转化为燃料的效率。

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