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CO2 Electroreduction in Ionic Liquids

机译:离子液体中的CO2电还原

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摘要

CO2 electroreduction is among the most promising approaches used to transform this green-house gas into useful fuels and chemicals. Ionic liquids (ILs) have already proved to be the adequate media for CO2 dissolution, activation, and stabilization of radical and ionic electrochemical active species in aqueous solutions. In general, IL electrolytes reduce the overpotential, increase the current density, and allow for the modulation of solution pH, driving product selectivity. However, little is known about the main role of these salts in the CO2 reduction process the assumption that ILs form solvent-separated ions. However, most of the ILs in solution are better described as anisotropic fluids and display properties of an extended cooperative network of supramolecular species. That strongly reflects their mesoscopic and nanoscopic organization, inducing different processes in CO2 reduction compared to those observed in classical electrolyte solutions. The major aspects concerning the relationship between the structural organization of ILs and the electrochemical reduction of CO2 will be critically discussed considering selected recent examples.
机译:二氧化碳电还原是将这种温室气体转化为有用的燃料和化学品的最有希望的方法之一。离子液体(ILs)已被证明是水溶液中CO2溶解,活化和稳定自由基和离子电化学活性物质的合适介质。通常,IL电解质可降低过电势,增加电流密度,并可以调节溶液的pH值,从而提高产品的选择性。但是,关于这些盐在CO2还原过程中的主要作用知之甚少,前提是IL会形成溶剂分离的离子。但是,溶液中的大多数IL可以更好地描述为各向异性流体,并显示超分子物种扩展协作网络的特性。与传统电解质溶液中观察到的过程相比,这强烈地反映了它们的介观和纳米组织,从而导致二氧化碳减少的过程不同。有关IL的结构组织和电化学还原CO2之间关系的主要方面将结合选定的最新实例进行严格讨论。

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