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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Combined effects of space charge and energetic disorder on photocurrent efficiency loss of field-dependent organic photovoltaic devices
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Combined effects of space charge and energetic disorder on photocurrent efficiency loss of field-dependent organic photovoltaic devices

机译:空间电荷和高能紊乱对场依赖型有机光伏器件光电流效率损失的综合影响

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摘要

The loss of photocurrent efficiency by space-charge effects in organic solar cells with energetic disorder was investigated to account for how energetic disorder incorporates spacecharge effects, utilizing a drift-diffusion model with field-dependent charge-pair dissociation and suppressed bimolecular recombination. Energetic disorder, which induces the Poole-Frenkel behavior of charge carrier mobility, is known to decrease the mobility of charge carriers and thus reduces photovoltaic performance. We found that even if the mobilities are the same in the absence of space-charge effects, the degree of energetic disorder can be an additional parameter affecting photocurrent efficiency when space-charge effects occur. Introducing the field-dependence parameter that reflects the energetic disorder, the behavior of efficiency loss with energetic disorder can differ depending on which charge carrier is subject to energetic disorder. While the energetic disorder that is applied to higher-mobility charge carriers decreases photocurrent efficiency further, the efficiency loss can be suppressed when energetic disorder is applied to lower-mobility charge carriers.
机译:研究了利用高能紊乱的有机太阳能电池中空间电荷效应造成的光电流效率损失,以利用具有电场依赖性电荷对解离和抑制的双分子重组的漂移扩散模型来解释高能紊乱如何并入空间电荷效应。引起电荷载流子迁移率的普尔-弗伦克行为的高能失调会降低电荷载流子的迁移率,从而降低光伏性能。我们发现,即使在没有空间电荷效应的情况下迁移率相同,当空间电荷效应发生时,高能障碍的程度也可能是影响光电流效率的另一个参数。引入反映高能障碍的场相关性参数,高能障碍的效率损失行为可能​​会有所不同,具体取决于哪个电荷载体遭受高能障碍。尽管施加到较高迁移率的电荷载体的高能紊乱进一步降低了光电流效率,但是当将注入高能紊乱应用于较低迁移率的电荷载体时,效率损失可以得到抑制。

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