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Efficient bipolar carrier transport in oligofluorenes

机译:寡氟芴中的高效双极载体运输

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Fluorene-based materials, such as polyfluorenes or oligofluorenes, are conventionally well known as efficient blue emitting materials. Intriguingly, it is recently unveiled that ter(9,9-diarylfluorene)s also exhibit efficient unusual nondispersive bipolar carrier-transport characteristics and high carrier mobilities of >10-3 cm2/Vs for both holes and electrons in the amorphous state. Making use of convenient substitution on C9 of fluorenes and corresponding variety in molecular structures and physical properties, in this work we systematically investigate influences of molecular structures, such as dialkyl-substitution vs. diaryl-substitution and oligomer length etc., on charge transport of oligofluorenes. Furthermore, utilizing liquid-crystalline properties of oligofluorenes with appropriate substitutions, comparative studies of carrier transport of oligofluornes in both vacuum-deposited amorphous states and aligned liquid-crystal glass states are also performed. Insights on intermolecular charge transport derived from the experimental observations and theoretical examinations are then discussed accordingly.
机译:芴基材料,例如聚氟烯烃或寡氟芴,通常是众所周知的蓝色发光材料。有趣的是,它最近推出的是,TER(9,9-二芳氟烯烯)S也表现出高效的不寻常的非运动双极载体传输特性和在非晶态中的孔和电子的高载流子迁移率> 10-3cm 2 / Vs的高载流子迁移率。在本工作中使用方便地取代氟化物的C9和相应的各种品种,在这项工作中,我们系统地研究了分子结构的影响,例如二烷基取代与二芳基替代和低聚物长度等oligofluorenes。此外,利用具有适当取代的寡聚氟烯酮的液晶性质,还进行了真空沉积的无定形状态和对齐的液晶玻璃状态中寡氟氟烃的载体转运的比较研究。然后,相应地讨论了从实验观察结果和理论检查的分子间电荷传输的见解。

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