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Charge Transport in Liquid Crystalline Semiconductor and Crosslinked Polymer Composite

机译:液晶半导体和交联聚合物复合物中的电荷传输

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摘要

We have fabricated a novel charge carrier transport material composed of a liquid crystalline molecule and a cross-linked polymer. This composite system exhibited high hole mobility comparable with that of the pure liquid crystalline material. The charge carrier transport properties were influenced by the polymerization temperature, i.e., by the mesophase during polymerization. The hole mobility did not depend on temperature and electric field in the case of polymerized samples in the mesophase. We discussed the carrier transport properties in the polymer composites in comparison with those of the pure liquid crystalline material and the conventional polymer composite of the molecularly doped polymers, in addition to the resulting domain structures in the polymer composites with reference to the carrier transport properties in smectic mesophase as well as in the isotropic phase.
机译:我们已经制备了由液晶分子和交联聚合物组成的新型电荷载流子传输材料。该复合体系具有与纯液晶材料相当的高空穴迁移率。电荷载流子传输性质受聚合温度,即聚合过程中的中间相的影响。在中间相中聚合样品的情况下,空穴迁移率不取决于温度和电场。除了参考聚合物中的载流子传输特性外,我们还讨论了聚合物复合材料中的载流子传输性能,与纯液晶材料和分子掺杂聚合物的常规聚合物复合材料的载流子传输性能相比。近晶中间相以及各向同性相。

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