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Charge Carrier Transport and Photogeneration in P3HT:PCBM Photovoltaic Blends

机译:P3HT:PCBM光伏混合物中的电荷载流子传输和光生

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摘要

This article reviews the charge transport and photogeneration in bulk-heterojunction solar cells made from blend films of regioregular poly(3-hexylthiophene) (RR-P3HT) and methano­fullerene (PCBM). The charge transport, specifically the hole mobility in the RR-P3HT phase of the polymer:fullerene photovoltaic blend, is dramatically affected by thermal annealing. The hole mobility increases more than three orders of magnitude and reaches a value of up to 2 × 10−4 cm2 V−1 s−1 after the thermal annealing process as a result of an improved semi-crystallinity of the film. This significant increase of the hole mobility balances the electron and hole mobilities in a photovoltaic blend in turn reducing space-charge formation, and this is the most important factor for the strong enhancement of the photovoltaic efficiency compared to an as cast, that is, non-annealed device. In fact, the balanced charge carrier mobility in RR-P3HT:PCBM blends in combination with a field- and temperature-independent charge carrier generation and greatly reduced non-geminate recombination explains the large quantum efficiencies mea­sured in P3HT:PCBM photovoltaic devices.
机译:本文回顾了由规整型聚(3-己基噻吩)(RR-P3HT)和甲基富勒烯(PCBM)的混合薄膜制成的体-异质结太阳能电池中的电荷传输和光生。电荷传输,特别是聚合物:富勒烯光伏混合物的RR-P3HT相中的空穴迁移率,受热退火的影响很大。由于改善了膜的半结晶度,在热退火工艺之后,空穴迁移率增加了三个以上的数量级,并且达到了高达2×10-4 cm2 V-1 s-1的值。空穴迁移率的这一显着提高使光伏混合物中的电子迁移率与空穴迁移率保持平衡,进而减少了空间电荷的形成,这是与铸造(即非铸造)相比大大提高光伏效率的最重要因素。退火设备。实际上,RR-P3HT:PCBM中平衡的电荷载流子迁移与场和温度无关的电荷载流子生成相结合,大大降低了非成对的重组,这说明了在P3HT:PCBM光伏器件中测量的大量子效率。

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