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Molecular devices featuring sequential photoinduced charge separations for the storage of multiple redox equivalents

机译:具有顺序光诱导电荷分离功能的分子装置,用于存储多个氧化还原当量

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The present review focuses on one facet of artificial photosynthesis: the charge photo-accumulation function, which has been much less investigated than photoinduced energy or electron transfer reactions. However, charge accumulation is certainly of fundamental importance to perform reactions involving multiple redox equivalents, such as most fuel making reactions. Indeed, the charge photo-accumulation function is specifically relevant to the efficiency of artificial photosynthetic devices and represents an essential property of the photosystem II in oxygenic photosynthetic organisms. We introduce the general concept of charge photo-accumulation, which consists in the collection of multi-redox equivalents at specific sites upon consecutive multiple photon absorptions. We survey the existing artificial molecular systems capable of multiple charge storage upon successive light excitations and new directions for future developments in this area are presented.
机译:本综述着重于人工光合作用的一个方面:电荷光累积功能,与光诱导的能量或电子转移反应相比,它的研究少得多。但是,电荷累积对于进行涉及多个氧化还原当量的反应(例如大多数燃料制造反应)当然至关重要。实际上,电荷光累积功能与人工光合作用装置的效率特别相关,并且代表了光合系统II在含氧光合生物中的基本特性。我们介绍了电荷光累积的一般概念,该概念包括在连续多个光子吸收后,在特定位置收集多个氧化还原当量。我们调查了现有的人工分子系统,该系统能够在连续的光激发下实现多种电荷存储,并提出了该领域未来发展的新方向。

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