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Influence of the recombination mechanism via band tails on the electric performance of a bulk heterojunction solar cell

机译:带尾的重组机制对体异质结太阳能电池电性能的影响

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Trap assisted recombination via tail states model was simulated and the results were compared with those obtained from direct recombination model. It is shown that the dark ideality factor of the first one depends directly on both the Urbach energies and charge carrier capture coefficients. These parameters were directly related to the loss of efficiency in organic solar cells. When either one of capture coefficients or Urbach energies increase, the density of traps increases as well, and solar cell ideality factor deviates from 1 to 2. On the contrary, the ideality factor is close to unity as long as the density of states is low, in such case the recombination becomes band to band type. Under our assumptions, the dark ideality factor is influenced by trap assisted recombination model and under illumination, solar cell parameters are strongly reduced by trap assisted model via band tails recombination as we will demonstrate in our results.
机译:模拟了通过尾态模型进行的陷阱辅助重组,并将结果与​​直接重组模型得到的结果进行了比较。结果表明,第一个的暗理想因子直接取决于Urbach能量和载流子俘获系数。这些参数与有机太阳能电池效率的损失直接相关。当捕获系数或Urbach能量之一增加时,陷阱的密度也会增加,并且太阳能电池的理想因子会从1变为2。相反,只要状态密度低,理想因子就接近于1。在这种情况下,重组成为带对带类型。在我们的假设下,黑暗理想因子受陷阱辅助重组模型的影响,在光照下,陷阱辅助模型通过带尾重组使太阳能电池参数大大降低,正如我们将在结果中证明的那样。

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