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Boosting High Added-Value Chemicals Formation By Means Of Photoelectrocatalysis

机译:通过光电催化促进高附加值化学品的形成

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Within the current production systems, the need for low environmental impact processes to produce chemicals, the treatment of aqueous effluents and the production of fuels is becoming an increasingly urgent challenge. In this context, photoelectrocatalysis (PEC), which couples the electrochemical method (EC) with photocatalysis (PC), can be considered a valid alternative to traditional catalytic processes. It increases the photocatalytic and the electrochemical efficiency by improving the separation of the photoproduced electrons and holes on the active electrode surface and addressing the partial oxidation products formation by selecting the applied potential values. This review is concerned with the possibility of forming PEC high-added-value chemicals, sometimes with the contemporary production of hydrogen, by using different materials for the fabrication of photoanodes and photocathodes in different solvents and system configuration, obtaining very interesting values of conversion, selectivity, and Faradaic efficiencies. In particular, the review presents results related to the production of valuable compounds by the valorisation of alcohols, biomass derivatives and some peculiar organic substrates, highlighting the influence of electrode composition, applied bias, electrolyte type, and solvent.
机译:在当前的生产系统中,对低环境影响的化学品生产过程、水性废水处理和燃料生产的需求正成为日益紧迫的挑战。在这种情况下,将电化学法(EC)与光催化法(PC)相结合的光电催化(PEC)可以被认为是传统催化过程的有效替代方案。它通过改善活性电极表面上光生电子和空穴的分离,并通过选择施加的电位值来解决部分氧化产物的形成,从而提高了光催化和电化学效率。这篇综述关注的是,通过使用不同的材料在不同的溶剂和系统配置中制造光阳极和光电阴极,形成PEC高附加值化学品的可能性,有时与当代氢气生产有关,获得非常有趣的转化率、选择性和法拉第效率值。特别是,该综述介绍了通过醇、生物质衍生物和一些特殊的有机底物的价值化来生产有价值化合物的相关结果,强调了电极组成、施加的偏置、电解质类型和溶剂的影响。

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