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Improving photoconductance of fluorinated donors with fluorinated acceptors

机译:用氟化受体提高氟化供体的光电导

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This work investigates the influence of fluorination of both donor and acceptor materials on the generation of free charge carriers in small molecule donor/fullerene acceptor BHJ OPV active layers. A fluorinated and non-fluorinated small molecule analogue were synthesized and their optoelectronic properties characterized. The intrinsic photoconductance of blends of these small molecule donors was investigated using time-resolved microwave conductivity. Blends of the two donor molecules with a traditional non-fluorinated fullerene (PC70BM) as well as a fluorinated fullerene (C60(CF3)2-1) were investigated using 5% and 50% fullerene loading. We demonstrate for the first time that photoconductance in a 50:50 donor:acceptor BHJ blend using a fluorinated fullerene can actually be improved relative to a traditional non-fluorinated fullerene by fluorinating the donor molecule as well.
机译:这项工作调查了供体和受体材料的氟化作用对小分子供体/富勒烯受体BHJ OPV活性层中自由电荷载流子产生的影响。合成了氟化的和非氟化的小分子类似物,并对它们的光电特性进行了表征。使用时间分辨的微波电导率研究了这些小分子供体的共混物的固有光电导。研究了两种供体分子与传统非氟化富勒烯(PC70BM)以及氟化富勒烯(C60(CF3)2-1)的共混物,其负载量为5%和50%。我们首次证明,通过氟化供体分子,相对于传统的非氟化富勒烯,使用氟化富勒烯的50:50供体:受体BHJ混合物中的光电导实际上可以得到改善。

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