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首页> 外文期刊>ACS applied materials & interfaces >Macroscopic Alignment of One-Dimensional Conjugated Polymer Nanocrystallites for High-Mobility Organic Field-Effect Transistors
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Macroscopic Alignment of One-Dimensional Conjugated Polymer Nanocrystallites for High-Mobility Organic Field-Effect Transistors

机译:高迁移率有机场效应晶体管的一维共轭聚合物纳米晶体的宏观排列

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摘要

Controlling the morphology of polymer semiconductors remains a fundamental challenge that hinders their widespread applications in electronic and optoelectronic devices and commercial feasibility. Although conjugated polymer nanowires (NWs) are envisioned to afford high charge-carrier mobility, the alignment of preformed conjugated polymer NWs has not been reported. Here, we demonstrate an extremely simple and effective strategy to generate well-aligned arrays of one-dimensional (1D) polymer semiconductors that exhibit remarkable enhancement in charge transport using a solution shear-coating technique. We show that solution shear coating of poly(alkylthiophene) NWs induces extension or coplanarization of the polymer backbone and highly aligned network films, which results in enhanced intra- and intermolecular ordering and reduced grain boundaries. Consequently, highly aligned poly(3-hexylthiophene) NWs exhibited over 33-fold enhancement in the average carrier mobility, with the highest mobility of 0.32 cm(2) V-1 s(-1) compared to pristine films. The presented platform is a promising strategy and general approach for achieving well-aligned 1D nanostructures of polymer semiconductors and could enable the next generation of high-performance flexible electronic devices for a wide range of applications.
机译:控制聚合物半导体的形态仍然是一个基本挑战,阻碍了它们在电子和光电设备中的广泛应用以及商业可行性。尽管预见共轭聚合物纳米线(NW)可以提供高的载流子迁移率,但尚未报道预成型的共轭聚合物NWs的排列。在这里,我们演示了一种非常简单有效的策略,可以使用溶液剪切涂覆技术生成排列良好的一维(1D)聚合物半导体阵列,这些阵列在电荷传输方面表现出显着增强。我们表明,聚(烷基噻吩)NWs的溶液剪切涂层诱导聚合物主链和高度对齐的网络膜的延伸或共平面化,从而导致增强的分子内和分子间有序化和减小的晶界。因此,高度对齐的聚(3-己基噻吩)NW表现出平均载流子迁移率提高了33倍以上,与原始薄膜相比,迁移率最高,为0.32 cm(2)V-1 s(-1)。提出的平台是实现聚合物半导体良好对齐的一维纳米结构的有前途的策略和一般方法,并且可以使下一代高性能柔性电子设备实现广泛的应用。

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