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A theoretical study of influence of charge carrier mobility in PTB7:PC_(71)BM bulk heterojunction organic solar cells

机译:PTB7:PC_(71)BM本体异质结有机太阳能电池中载流子迁移率影响的理论研究

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摘要

In this study, an optoelectronic model is presented to simulate the structure of PTB7:PC_(71)BM organic solar cells. This model is based on transfer matrix model for calculating optical processes and drift-diffusion model for computing both electrical and charge transport processes; the latter includes the effects of energetic disorder. In the presence of energetic disorder, the total recombination is calculated as the sum of Langevin recombination, recombination via charge transfer states, and recombination via exponential tail states. We investigate the influence of charge carrier mobility on photovoltaic parameters, charge transport, and recombination rate. Simulation results indicate that open circuit voltage is governed by the charge carrier mobility and power conversion efficiency as a function of charge carrier mobility has a maximum value at μ = 10~(-2) (cm~2/Vs). Simulated current density-voltage curve reveals good agreement with published experimental results. The open circuit voltage is calculated as a function of generation rate. It is found that the slope of lines increases with decreasing the charge carrier mobility.
机译:在这项研究中,提出了一种光电模型来模拟PTB7:PC_(71)BM有机太阳能电池的结构。该模型基于用于计算光学过程的转移矩阵模型和用于计算电和电荷传输过程的漂移扩散模型;后者包括精神错乱的影响。在高能障碍的情况下,总重组计算为Langevin重组,通过电荷转移态进行重组和通过指数尾态进行重组的总和。我们研究了载流子迁移率对光伏参数,电荷传输和复合速率的影响。仿真结果表明,开路电压受载流子迁移率和功率转换效率的影响,其随载流子迁移率的变化在μ= 10〜(-2)(cm〜2 / Vs)时达到最大值。模拟的电流密度-电压曲线与已发表的实验结果吻合良好。计算开路电压作为发电率的函数。发现线的斜率随着电荷载流子迁移率的降低而增加。

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