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首页> 外文期刊>Angewandte Chemie >Hollow Metal-Organic-Framework-Mediated In Situ Architecture of Copper Dendrites for Enhanced CO2 Electroreduction
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Hollow Metal-Organic-Framework-Mediated In Situ Architecture of Copper Dendrites for Enhanced CO2 Electroreduction

机译:中空金属 - 有机框架介导原位型铜枝晶,用于增强CO2电荷

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摘要

Electrocatalytic reduction of CO2 to a single product at high current densities and efficiencies remains a challenge. However, the conventional electrode preparation methods, such as drop-casting, usually suffer from low intrinsic activity. Herein, we report a synthesis strategy for preparing heterogeneous electrocatalyst composed of 3D hierarchical Cu dendrites that derived from an in situ electrosynthesized hollow copper metal-organic framework (MOF), for which the preparation of the Cu-MOF film took only 5 min. The synthesis strategy preferentially exposes active sites, which favor's the reduction of CO2 to formate. The current density could be as high as 102.1 mA cm(-2) with a selectivity of 98.2 % in ionic-liquid-based electrolyte and a commonly used H-type cell.
机译:在高电流密度和效率下的二氧化碳的电催化还原到单一产品仍然是一个挑战。 然而,常规电极制备方法,例如滴浇铸,通常患有低固有活性。 在此,我们报告了一种用于制备由衍生自原位电酸化中空铜金属覆铜金属 - 有机骨架(MOF)组成的非均相电催化剂的合成策略,该薄膜的制备仅需5分钟。 合成策略优先暴露活性位点,这有利于减少二氧化碳甲酸。 电流密度可以高达102.1 mA cm(-2),选择性为98.2%,在离子 - 液体基电解质和常用的H型细胞中。

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