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A Simple Approach for Unraveling Optoelectronic Processes in Organic Solar Cells under Short-Circuit Conditions

机译:短路条件下有机太阳能电池中解开光电过程的简单方法

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摘要

The short-circuit current (J(sc)) of organic solar cells is defined by the interplay of exciton photogeneration in the active layer, geminate and non-geminate recombination losses and free charge carrier extraction. The method proposed in this work allows the quantification of geminate recombination and the determination of the mobility-lifetime product (mu tau) as a single integrated parameter for charge transport and non-geminate recombination. Furthermore, the extraction efficiency is quantified based on the obtained mu tau product. Only readily available experimental methods (current-voltage characteristics, external quantum efficiency measurements) are employed, which are coupled with an optical transfer matrix method simulation. The required optical properties of common organic photovoltaic (OPV) materials are provided in this work. The new approach is applied to three OPV systems in inverted or conventional device structures, and the results are juxtaposed against the mu tau values obtained by an independent method based on the voltage-capacitance spectroscopy technique. Furthermore, it is demonstrated that the new method can accurately predict the optimal active layer thickness.
机译:有机太阳能电池的短路电流(j(sc))由激子光源在有源层,Geminate和非Geminate重组损失和游离电荷载体萃取中的相互作用来定义。本作作品中提出的方法允许定量Geminate重组和迁移寿命产品(Mu Tau)的测定作为用于电荷传输和非Geminate重组的单一集成参数。此外,基于所获得的Mu Tau产品来量化提取效率。仅采用随机可用的实验方法(电流 - 电压特性,外部量子效率测量),其与光学传输矩阵法仿真耦合。在该工作中提供了普通有机光伏(OPV)材料的所需光学性质。新方法应用于倒置或传统的装置结构中的三种OPV系统,结果与基于电压 - 电容谱技术的独立方法获得的Mu Tau值并置。此外,证明新方法可以准确地预测最佳的有源层厚度。

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