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Oriented Liquid Crystalline Polymer Semiconductor Films with Large Ordered Domains

机译:具有大序域的取向液晶聚合物半导体薄膜

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摘要

Large strains are applied to liquid crystalline poly-(2,5-bis(3-tetradecylthiophen-2yl)thieno(3,2-b)thiophene) (pBTTT) films when held at elevated temperatures resulting in in-plane polymer alignment. We find that the polymer backbone aligns significantly in the direction of strain, and that the films maintain large quasi-domains similar to that found in spun-cast films on hydrophobic surfaces, highlighted by dark-field transmission electron microscopy imaging. The highly strained films also have nanoscale holes consistent with dewetting. Charge transport in the films is then characterized in a transistor configuration, where the field effect mobility is shown to increase in the direction of polymer backbone alignment, and decrease in the transverse direction. The highest saturated field-effect mobility was found to be 1.67 cm2V−1s−1, representing one of the highest reported mobilities for this material system. The morphology of the oriented films demonstrated here contrast significantly with previous demonstrations of oriented pBTTT films that form a ribbon like morphology, opening up opportunities to explore how differences in molecular packing features of oriented films impact charge transport. Results highlight the role of grain boundaries, differences in charge transport along the polymer backbone and π-stacking direction, and structural features that impact the field dependence of charge transport.
机译:当保持高温时,将大应变施加到液晶聚-(2,5-双(3-十四烷基噻吩-2-基)噻吩并(3,2-b)噻吩)(pBTTT)薄膜上,导致面内聚合物排列。我们发现,聚合物主链在应变方向上显着对齐,并且该膜保持类似于在疏水表面上的纺铸膜中发现的类似的大准结构域,通过暗场透射电子显微镜成像突出显示。高度应变的薄膜还具有与去湿一致的纳米级孔。薄膜中的电荷传输然后以晶体管构型为特征,其中场效应迁移率显示为在聚合物主链排列方向上增加,而在横向方向上减少。发现饱和场效应迁移率最高,为1.67 cm 2 V -1 s -1 ,是报道的最高迁移率之一这个物质系统。此处展示的取向膜的形态与先前形成带状形态的带状pBTTT膜的先前展示形成鲜明对比,这为探索取向膜的分子堆积特征差异如何影响电荷迁移提供了机会。结果突出了晶界的作用,沿聚合物主链和π堆积方向的电荷传输差异以及影响电荷传输的场依赖性的结构特征。

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