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The Electrochemical Conversion of Carbon Dioxide on Cu-Ni Stacked Bilayer Electrodes

机译:二氧化碳对Cu-Ni堆叠双层电极的电化学转化

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The product selectivity in the electrochemical conversion of carbon dioxide (CO_2) strongly depends on the electrode metal. As each metal leads to a characteristic product composition, a multimetallic composite electrode is required for the selective product formation by CO_2 conversion. Here, we show the selective CO_2 conversion with a current efficiency of 56.2% for the hydrocarbon formation on the Cu-Ni stacked bilayer electrodes. Interestingly, a thinner Ni stacked electrode shows higher selectivity in converting CO_2 to hydrocarbons than pristine Cu electrodes, while no hydrocarbon formation carries out on those with thicker Ni deposition or on pristine Ni electrodes. We also demonstrate that the crystal structure of the support Cu electrode significantly contributes to the activity of CO_2 conversion, further confirming the importance of the structural arrangement of Cu and Ni in the Cu-Ni stacked bilayer electrodes.
机译:二氧化碳(CO_2)电化学转化中的产品选择性强烈取决于电极金属。当每个金属导致特征产品组合物时,通过CO_2转化率选择性产品形成需要多金属复合电极。在这里,我们展示了Cu-Ni堆叠双层电极上的烃地层的电流效率的选择性CO_2转化率为56.2%。有趣的是,较薄的Ni堆叠电极显示出比原始Cu电极转化为烃的较高的选择性,而没有烃地层在具有较厚的Ni沉积或原始Ni电极上进行烃形成。我们还证明了载体Cu电极的晶体结构显着有助于Co_2转化的活性,进一步证实了Cu和Ni在Cu-Ni堆叠双层电极中的结构布置的重要性。

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