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Enhanced Hole-Transporting Behavior of Discotic Liquid-Crystalline Physical Gels

机译:盘状液晶物理凝胶的空穴传输行为增强

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摘要

Discotic liquid-crystalline (LC) physical gels have been prepared by combining the self-assembled fibers of a low-molecular-weight gelator and semiconducting LC triphenylene derivatives. The hole mobilities of the discotic LC physical gels measured by a time-of-flight method become higher than those of LC triphenylenes alone. The introduction of the finely dispersed networks of the gelator in the hexagonal columnar phases may affect the molecular dynamics of the liquid crystals, resulting in the enhancement of hole transporting behavior in the LC gel state.
机译:通过将低分子量胶凝剂的自组装纤维与半导体LC三亚苯基衍生物结合在一起,制备了盘状液晶(LC)物理凝胶。通过飞行时间方法测量的盘状LC物理凝胶的空穴迁移率变得比单独的LC三亚苯基的更高。在六角形柱状相中引入精细分散的胶凝剂网络可能会影响液晶的分子动力学,从而导致LC凝胶态下空穴传输行为的增强。

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