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Interplay between Bimolecular Recombination and Carrier Transport Distances in Bulk Heterojunction Organic Solar Cells

机译:大分子异质结有机太阳能电池中双分子重组与载流子传输距离之间的相互作用

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摘要

In this work, it is demonstrated that bimolecular recombination depends on the distance that free carriers are required to travel in transit to the electrodes in bulk heterojunction organic solar cells. By employing semi-transparent devices, the carrier transport distance can be controlled via the local light absorption profile with an appropriate choice of the illumination side and incident wavelength. Using a series of light intensity-dependent measurements, bimolecular recombination is shown to depend on the distance electrons or holes are required to transit the active layer. This effect is demonstrated for three different bulk heterojunction blends, where the restrictive carrier that causes the onset of recombination is identified. The mobility-lifetime products of the limiting carriers are also estimated using a simple model for carrier extraction, where similar values are obtained regardless of the absorption profile. Implications for 1-sun performance are also discussed, which provide guidelines for fabricating devices with thicker active layers capable of maximizing light absorption without succumbing to recombination losses.
机译:在这项工作中,证明了双分子重组取决于自由载流子在迁移到本体异质结有机太阳能电池中的电极时需要行进的距离。通过使用半透明器件,可以通过局部光吸收曲线控制载流子的传输距离,并适当选择照射面和入射波长。使用一系列依赖于光强度的测量,显示出双分子复合取决于电子或空穴穿过活性层所需的距离。对于三种不同的本体异质结共混物证明了这种效果,其中确定了引起重组开始的限制性载体。还使用用于载流子提取的简单模型来估算限制性载流子的迁移率-寿命产物,其中无论吸收曲线如何,都可获得相似的值。还讨论了对1-sun性能的影响,这为制造具有较厚有源层的设备提供了指导原则,该有源层能够最大化光吸收而不会导致重组损失。

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