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Controlled assembly of Cu nanoparticles on pyridinic-N rich graphene for electrochemical reduction of CO2 to ethylene

机译:富吡啶二氮的石墨烯上铜纳米粒子的可控组装,用于电化学还原CO2为乙烯

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Monodisperse Cu nanoparticles (NPs) assembled on a pyridinic-N rich graphene (p-NG) support show a Cu NP mass- and size-dependent catalysis for the selective electrochemical reduction of CO2 to ethylene (C2H4). For the 7 nm Cu NPs assembled on the p-NG with the p-NG/Cu mass ratio of 1:1, the C2H4 formation Faradaic efficiency and hydrocarbon selectivity reach 19% and 79% respectively at -0.9 V (vs reversible hydrogen electrode). The p-NG itself can catalyze the CO2 reduction to formate, but in the composite p-NG-Cu structure, the pyridinic-N functions as a CO2 and proton absorber, facilitating hydrogenation and carbon-carbon coupling reactions on Cu for the formation of C2H4. The work demonstrates a new strategy to improve Cu NP catalytic activity and selectivity for the electrochemical reduction of CO2 for sustainable chemistry and energy applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:组装在富含吡啶N的石墨烯(p-NG)载体上的单分散Cu纳米颗粒(NPs)显示出将Cu2选择性电化学还原为乙烯(C2H4)的Cu NP质量和尺寸依赖的催化作用。对于以1:1的p-NG / Cu质量比组装在p-NG上的7 nm Cu NP,在-0.9 V时C2H4形成法拉第效率和烃选择性分别达到19%和79%(vs可逆氢电极) )。 p-NG本身可以催化CO2还原生成甲酸酯,但在复合p-NG-Cu结构中,吡啶-N充当CO2和质子吸收剂,促进Cu上的氢化和碳-碳偶联反应,从而形成P-NG。 C2H4。这项工作展示了一种新的策略,可以提高Cu NP的催化活性和电化学还原CO2的选择性,以实现可持续的化学和能源应用。 (C)2016 Elsevier Ltd.保留所有权利。

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