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Growth of polythiophene/perylene tetracarboxydiimide donor/acceptor shish-kebab nanostructures by coupled crystal modification

机译:通过耦合晶体修饰生长聚噻吩/ per四羧二酰亚胺供体/受体烤肉串纳米结构

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摘要

Self-assembled crystalline organic nanostructures containing electron donor and acceptor materials hold promise as building blocks for photovoltaic devices. We show that coupled crystallization of poly(3-hexyl thiophene) (P3HT) and perylene tetracarboxydiimide (PDI) induced by solvent evaporation, wherein both components modify crystallization of the other, gives rise to donor/acceptor "shish-kebabs" with tunable nanostructures. P3HT kinetically stabilizes supersaturated solutions of PDI and modifies the growth of PDI crystals, leading to formation of extended PDI shish nanowires that in turn serve as heterogeneous nucleation sites for fibrillar P3HT kebabs during solvent casting. The dimensions of these nanostructures can be tailored through variations in donor/acceptor ratio or solvent quality, and the method is shown to be general to several other poly(3-alkyl thiophenes) and perylene derivatives, thus providing a simple and robust route to form highly crystalline nanophase separated organic donor/acceptor assemblies.
机译:包含电子供体和受体材料的自组装晶体有机纳米结构有望成为光伏器件的基础。我们表明,由溶剂蒸发引起的聚(3-己基噻吩)(P3HT)和per四羧基二酰亚胺(PDI)的偶联结晶,其中两种组分均改变了另一种的结晶,产生了具有可调纳米结构的供体/受体“烤肉串” 。 P3HT在动力学上稳定了PDI的过饱和溶液并改变了PDI晶体的生长,从而导致形成了延伸的PDI细微纳米线,进而在溶剂浇铸过程中用作原纤维P3HT烤肉串的异质成核位点。可以通过改变供体/受体比例或溶剂质量来定制这些纳米结构的尺寸,并且该方法对其他几种聚(3-烷基噻吩)和per衍生物是通用的,从而提供了一种简单而稳健的形成方法高结晶纳米相分离的有机供体/受体组件。

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