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Cu(I) Reducibility Controls Ethylene vs Ethanol Selectivity on (100)-Textured Copper during Pulsed CO2 Reduction

机译:Cu(I)再加上乙烯与乙醇选择性在脉冲二氧化碳减少期间(100) - 胶合铜

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The electrochemical CO_(2) reduction reaction (CO_(2)RR) can convert widely available CO_(2) into value-added C_(2) products, such as ethylene and ethanol. However, low selectivity toward either compound limits the effectiveness of current CO_(2)RR electrocatalysts. Here, we report the use of pulsed overpotentials to improve the ethylene selectivity to 67% with >75% overall C_(2) selectivity on (100)-textured polycrystalline Cu foil. The pulsed CO_(2)RR can be made selective to either ethylene or ethanol by controlling the reaction temperature. We attribute the enhanced C_(2) selectivity to the improved CO dimerization kinetics on the active Cu surface on predominately (100)-textured Cu grains with the reduced hydrogen adsorption coverage during the pulsed CO_(2)RR. The ethylene vs ethanol selectivity can be explained by the reducibility of the Cu(I) species during the cathodic potential cycle. Our work demonstrates a simple route to improve the ethylene vs ethanol selectivity and identifies Cu(I) as the species responsible for ethanol production.
机译:电化学CO_2还原反应(CO_2)RR)可以将广泛使用的CO_2转化为附加值的C_2产品,如乙烯和乙醇。然而,对这两种化合物的低选择性限制了当前CO_2)RR电催化剂的有效性。在这里,我们报告了使用脉冲过电位将(100)织构多晶铜箔上的乙烯选择性提高到67%,总C_2选择性>75%。通过控制反应温度,可以使脉冲CO_2)RR对乙烯或乙醇具有选择性。我们将增强的C_2选择性归因于在脉冲CO_2RR期间,在主要(100)织构的Cu颗粒上,活性Cu表面上的CO二聚动力学得到改善,氢吸附覆盖率降低。乙烯对乙醇的选择性可以用阴极电位循环中Cu(I)物种的还原性来解释。我们的工作展示了一种简单的方法来提高乙烯和乙醇的选择性,并确定Cu(I)是负责乙醇生产的物种。

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