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Synthesis and Photophysical Properties of Novel Fullerene Derivatives as Model Compounds for Bulk-Heterojunction PV Cells

机译:新型富勒烯衍生物的合成及其光物理性质作为体-异质结PV电池的模型化合物

摘要

Covalent and well-defined oligomer-fullerene donor-acceptor molecular structures can serve as important model systems for plastic PV cells, based on interpenetrating networks of conjugated polymers and fullerene derivatives. Two series of [60]fullerene-oligomer dyads and triads were prepared and investigated with respect to their photophysical properties such as photoinduced electron transfer using photoinduced absorption spectroscopy. We report here on a series of fullerene-oligothiophene-fullerene triads with ter-, sexi- and novithienyl donor moieties and on a homologous series of oligo [phenylenevinylene]-fullerene dyads. Measurements on these novel structures both in solution and in the solid state reveal that the environment plays a crucial role in the formation and lifetime of the various photoinduced charged states in these molecules.
机译:基于共轭聚合物和富勒烯衍生物的互穿网络,共价和定义明确的低聚物-富勒烯供体-受体分子结构可以用作塑料PV电池的重要模型系统。制备了两个系列的[60]富勒烯-低聚物二元组和三元组,并使用光致吸收光谱研究了它们的光物理性质,例如光致电子转移。我们在这里报道了一系列具有叔,六丁香和新戊二烯基供体部分的富勒烯-低聚噻吩-富勒烯三联体,以及同系列的低聚[苯基亚乙烯基]-富勒烯二联体。对溶液和固态中这些新颖结构的测量表明,环境在这些分子中各种光致带电态的形成和寿命中起着至关重要的作用。

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