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Influence of exponential tail states on photovoltaic parameters and recombination of bulk heterojunction organic solar cells: an optoelectronic simulation

机译:指数尾态对光电参数和体异质结有机太阳能电池复合的影响:光电模拟

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摘要

Recombination is an important loss mechanism in organic solar cells. Here, both free charge and trapped charge carriers are taken into account in order to calculate the recombination rate. Trapped charge carriers are approximated by an exponential tail between the conduction band and valence band, and recombination is calculated as the sum of bimolecular recombination and trap-assisted recombination, the latter being described by recombination via exponential tail states. Then, an optoelectronic model including the effect of tail states is employed by finite element method to simulate a common structure of P3HT:PCBM organic solar cell. We investigate the influence of characteristic temperature on device performance, charge carrier densities and recombination rate. Simulation results reveal that the dominant recombination process could be the Langevin recombination or the recombination via exponential tail, depending on the characteristic temperature and applied voltage. Calculated open circuit voltage versus generation rate demonstrates a good agreement between our modeling prediction for the dominant recombination and experimental reports.
机译:重组是有机太阳能电池中的重要损耗机制。在此,考虑自由电荷载流子和捕获的电荷载流子两者,以便计算复合率。陷获的电荷载流子通过导带和价带之间的指数尾部近似,重组计算为双分子重组和陷阱辅助重组的总和,后者通过指数尾态进行重组来描述。然后,通过有限元方法采用包含尾态影响的光电模型,以模拟P3HT:PCBM有机太阳能电池的通用结构。我们研究了特征温度对器件性能,电荷载流子密度和复合率的影响。仿真结果表明,取决于特征温度和施加的电压,主要的重组过程可以是兰格文重组或通过指数尾的重组。计算出的开路电压与发电率之间的关系表明,我们的主要重组模型预测结果与实验报告之间具有很好的一致性。

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