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Oxygen Plasma Induced Hierarchically Structured Gold Electrocatalyst for Selective Reduction of Carbon Dioxide to Carbon Monoxide

机译:氧等离子体诱导的分层结构金电催化剂,用于将二氧化碳选择性还原为一氧化碳

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Electrochemical reduction of CO2 into C1 products with high energy density has attracted attention due to the demands for renewable energy sources. Herein, we demonstrate a selective electrocatalytic CO2 reduction system where the cathode consists of hierarchically structured Au islands catalysts. To be more specific, the Au islands were prepared by oxygen plasma treatment on the Au foil to increase the current density for the selective production of carbon monoxide with over 95% of faradaic efficiency. Faradaic efficiency, production rate, and the onset potential for CO2 reduction were significantly improved by the expanded surface area compared with a polycrystalline Au electrode. Furthermore, the performance of CO2 reduction to CO was enhanced by adding ionic liquid (1-butyl-3-methylimidazolium tetrafluoroborate) which has high CO2-capture ability and catalytic activity. On the other hand, the rate-determining step of the Au electrode for the CO production determined by Tafel plots was found to be consistent with the initial one electron transfer step to form the surface-adsorbed CO2 intermediates regardless of the application of hierarchically structured catalyst and ionic liquid in the CO2 reduction system.
机译:由于对可再生能源的需求,电化学将二氧化碳还原为高能量密度的C1产品引起了人们的关注。在这里,我们演示了一种选择性电催化CO2还原系统,其中阴极由分层结构的Au岛催化剂组成。更具体地说,通过在Au箔上进行氧等离子体处理来制备Au岛,以增加法拉第效率超过95%的选择性生产一氧化碳的电流密度。与多晶Au电极相比,扩大的表面积显着提高了法拉第效率,生产率和CO 2还原开始潜力。另外,通过添加具有高的CO 2捕获能力和催化活性的离子液体(1-丁基-3-甲基咪唑鎓四氟硼酸酯),可以提高将CO 2还原为CO的性能。另一方面,发现通过塔菲尔曲线确定的用于生产CO的Au电极的速率确定步骤与形成表面吸附的CO 2中间体的初始单电子转移步骤一致,而与应用分层结构催化剂无关和二氧化碳还原系统中的离子液体。

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