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Unusual charge transport and reduced bimolecular recombination in PDTSiTzTz: PC71BM bulk heterojunction blend

机译:PDTSiTzTz:PC71BM本体异质结共混物中的异常电荷传输和双分子重组减少

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摘要

Solar cells with bulk heterojunction active layers containing donor-acceptor copolymer PDTSiTzTz exhibit persistent high fill factors with thicknesses up to 400 nm. Transport and recombination in a blend of PDTSiTzTz and fullerene derivative PC71BM is studied using lateral organic photovoltaic structures. This material system is characterized by carrier-concentrationdependent charge carrier mobilities, a strongly reduced bimolecular recombination factor, and a negative Poole-Frenkel coefficient. The analysis provides an explanation for the relatively thickness-independent fill factor behaviour seen in solar cells using the copolymer PDTSiTzTz. Cumulative insights from this copolymer can be employed for future organic photovoltaic material development, study of existing high performance bulk heterojunciton blends, and improved solar cell design.
机译:具有包含供体-受体共聚物PDTSiTzTz的本体异质结有源层的太阳能电池表现出持久的高填充因子,厚度高达400 nm。使用横向有机光伏结构研究了PDTSiTzTz和富勒烯衍生物PC71BM的共混物中的运输和复合。该材料系统的特点是依赖于载流子浓度的电荷载流子迁移率,强烈降低的双分子复合因子和负的Poole-Frenkel系数。该分析为使用共聚物PDTSiTzTz的太阳能电池中相对独立于厚度的填充因子行为提供了解释。这种共聚物的累积见解可用于未来的有机光伏材料开发,现有高性能本体异质结共混物的研究以及改进的太阳能电池设计。

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