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Self-assembled Cuprous Coordination Polymer as a Catalyst for CO2 Electrochemical Reduction into C-2 Products

机译:作为C-2产品的CO 2电化学还原的催化剂自组装亚富含铜配位聚合物

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摘要

C-2 production with conventional metal complex catalysts has been a significant challenge. Here, we present the electrochemical reduction of CO2 into C-2 products such as ethylene and ethanol with high selectivity using a self-assembled cuprous coordination polymer nanoparticle (Cu-SCP). The features of the Cu-SCP catalyst are the arrangement of Cu atoms in close proximity, similar to that in metallic Cu, and a stable Cu(I) oxidation state throughout the reaction due to the coordination of ligands with Cu atoms, which inhibits conversion into Cu metal particles. The Cu-SCP also exhibits activity for C-2 production that is superior to that of a Cu metal electrode, without modification of the carbon particles and/or ionomers or continuous flow of the highly alkaline electrolyte, which will simplify the fabrication of a CO2 electrolyzer. The Cu-SCP can be synthesized by a facile process that utilizes a heterogeneous reaction, and the product selectivity can be changed by replacement of the organic ligands, which should open up possibilities for the design of other CO2 reduction catalysts.
机译:C-2具有常规金属络合物催化剂的生产是一项重大挑战。这里,我们将CO2的电化学还原为C-2产物,例如使用自组装的亚铜配位聚合物纳米粒子(Cu-SCP)具有高选择性的乙烯和乙醇。 Cu-SCP催化剂的特征是Cu原子的布置在紧密接近,与金属Cu中的稳定性Cu(I)氧化状态相似,由于配体与Cu原子的配位,抑制转化率进入Cu金属颗粒。 Cu-SCP还表现出优于Cu金属电极的C-2产生的活性,而不会改变碳颗粒和/或离聚物或高碱性电解质的连续流动,这将简化CO2的制造电解柜。 Cu-SCP可以通过使用异质反应的容纳方法合成,并且可以通过替换有机配体来改变产品选择性,这应该为其他CO 2还原催化剂的设计开辟可能性。

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