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Alignment of Lyotropic Liquid Crystalline ConjugatedPolymers in Floating Films

机译:溶致液晶共轭排列浮膜中的聚合物

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摘要

Directed alignment of polymer chains plays an indispensable role in charge transport properties. We focus not only on a specific method to induce the alignment but also on the design of a liquid crystalline (LC) conjugated polymer to take advantage of an intrinsic self-assembly characteristic. We synthesized a lyotropic LC conjugated polymer, CP1-P, having o-nitrobenzyl (ONB) esters as photocleavable side chains and adopted a floating film transfer method to induce the polymer chain alignment through a lyotropic LC phase transition. An optimum amount of a high boiling point solvent (1,2-dichlorobenzene) in chloroform turned out to be an important factor to maximize the polymer chain alignment. The hole transport mobility along the polymer chain alignment direction was 13–14 times higher than that in the direction perpendicular to the alignment. In addition, the removal of side chains resulted in the solvent resistivity while maintaining the alignment feature in organic thin-film transistors.
机译:聚合物链的定向排列在电荷传输性质中起着不可或缺的作用。我们不仅着眼于诱导取向的特定方法,而且着眼于利用固有的自组装特性的液晶(LC)共轭聚合物的设计。我们合成了具有邻硝基苄基(ONB)酯作为光可裂解侧链的溶致LC共轭聚合物CP1-P,并采用了浮膜转移方法通过溶致LC相变来诱导聚合物链排列。事实证明,在氯仿中最佳量的高沸点溶剂(1,2-二氯苯)是最大化聚合物链排列的重要因素。沿聚合物链排列方向的空穴传输迁移率比垂直于排列方向的空穴传输迁移率高13-14倍。另外,除去侧链会导致溶剂电阻率,同时保持有机薄膜晶体管的排列特征。

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