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Analytical expression for the current-voltage characteristics of organic bulk heterojunction solar cells

机译:有机体异质结太阳能电池电流-电压特性的解析表达式

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摘要

An expression to describe the current-voltage characteristics of organic bulk heterojunction (BHJ) solar cells is derived. The derivation is obtained by analytically solving the drift-diffusion model for organic BHJ solar cells with the assumption of uniform bimolecular recombination rate. The assumption of uniform bimolecular recombination rate leads to somewhat inaccurate, for example, carrier densities as functions of the position inside the device. However, we show that this assumption should still produce an expression for the current as a function of applied voltage as if the actual bimolecular recombination rate is considered in the derivation. Applying this analytical expression to experimental current-voltage data enable us to directly extract and analyze, for example, the recombination loss of an organic BHJ solar cell as a function of applied voltage.
机译:得出描述有机体异质结(BHJ)太阳能电池电流-电压特性的表达式。该推导是通过在假设双分子复合速率均匀的情况下,通过解析求解有机BHJ太阳能电池的漂移扩散模型而获得的。假设双分子重组速率均匀,会导致某些不准确的结果,例如,作为设备内部位置的函数的载流子密度。但是,我们表明,此假设仍应根据施加的电压生成电流表达式,就好像在推导中考虑了实际的双分子复合率一样。将该分析表达式应用于实验电流-电压数据,使我们能够直接提取和分析例如作为施加电压的函数的有机BHJ太阳能电池的复合损耗。

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