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Modeling of molecular photocells: Application to two-level photovoltaic system with electron-hole interaction

机译:分子光电池建模:在具有电子-空穴相互作用的两级光伏系统中的应用

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We present a novel simple model to describe molecular photocells where the energy conversion process takes place by a single molecular donor-acceptor complex attached to electrodes. By applying quantum scattering theory, an open quantum system method, the coherent molecular photocell is described by a wave function. We analyze photon absorption, energy conversion, and quantum yield of a molecular photocell by considering the effects of electron-hole interaction and non-radiative recombination. We model the exciton creation, dissociation, and subsequent effects on quantum yield in the energy domain. We find that depending on the photocell structure, the electron-hole interaction can normally decrease or abnormally increase the cell efficiency. The proposed model helps to understand the mechanisms of molecular photocells, and it can be used to optimize their yield. Published by AIP Publishing.
机译:我们提出了一个新颖的简单模型来描述分子光电电池,其中通过连接到电极的单个分子供体-受体复合物发生能量转换过程。通过应用量子散射理论,开放量子系统方法,通过波函数描述相干分子光电管。我们通过考虑电子-空穴相互作用和非辐射复合的影响来分析分子光电池的光子吸收,能量转换和量子产率。我们在能量域中模拟激子的产生,解离以及随后对量子产率的影响。我们发现,根据光电池的结构,电子-空穴相互作用通常可以降低或反常地提高电池效率。所提出的模型有助于理解分子光电池的机理,并可用于优化其产量。由AIP Publishing发布。

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