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Effect of intermolecular interactions on charge and exciplexformation in high-performance organic semiconductors

机译:分子间相互作用对高性能有机半导体中电荷和分子复杂性的影响

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We present optical, photoluminescent (PL), and photoconductive properties of functionalized anthradithiophene (ADT) derivatives and their composites. Solution-deposited ADT films exhibit charge carrier mobilities of over 1.5 cm~2/(Vs), high PL quantum yields, and high photoconductivity. We show that molecular arrangement and intermolecular interactions significantly contribute to (opto)electronic properties of guest-host thin films of these pi-stacked materials. Specifically, the formation of aggregates plays an important role in establishing efficient conduction pathways in ADT derivatives dispersed in a host matrix. In addition, the extent and nature of aggregation and the resulting changes in PL and photoconductive behavior can be effectively manipulated through different film fabrications techniques. Furthermore, energy transfer and exciplex formation has been shown to occur between two different ADT derivatives, which also alters the photoconductive response of the systems. We explore the dependence of the photoconductive response of such guest-host systems on excitation wavelength.
机译:我们呈现光学,光致发光(PL)和官能化蒽噻吩(ADT)衍生物及其复合材料的光电导性能。沉积的ADT薄膜表现出超过1.5cm〜2 /(Vs),高pL量子产率和高光电导率的电荷载体迁移率。我们表明,分子布置和分子间相互作用显着贡献了这些PI堆叠材料的客体宿主薄膜的(Opto)电子特性。具体地,聚集体的形成在建立分散在宿主基质中的ADT衍生物中的有效传导途径方面起着重要作用。此外,可以通过不同的薄膜制造技术有效地操纵聚集的范围和性质和PL和光电导行的变化。此外,已经显示了能量转移和Exciplex形成在两种不同的ADT衍生物之间发生,这也改变了系统的光电导响应。我们探讨了这种客座主机系统对激发波长的光电导响应的依赖性。

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