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Phase segregation effect on TIPS pentacene crystallization and morphology for organic thin film transistors

机译:对有机薄膜晶体管尖丁烯结晶和形态的相分离效应

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摘要

In this study, we report that the vertical phase separation between a small-molecule organic semiconductor and a polymer additive can be utilized to drive semiconductor crystallization, enhance thin film morphology, and improve device performance of solution-processed organic thin film transistors (OTFTs). When 6,13-bis(triisopropylsilylethynyl) pentacene (TIPS pentacene) was demonstrated as a benchmark semiconductor material to blend with a polyacrylate polymer additive poly(2-ethylhexyl acrylate) (P2EHA), it was found that a vertical phase segregation occurred between TIPS pentacene and P2EHA, providing a confinement of anisotropic semiconductor crystallization and resulting in an elevated TIPS pentacene concentration at the charge transport interface. Accordingly, distinctive TIPS pentacene thin film morphology in terms of areal coverage, grain width, and crystal orientation was obtained by varying the loading ratio of the P2EHA polymer additive. Bottom-gate and bottom-contact OTFTs were fabricated to test charge transport and a hole mobility of up to 0.27 cm/ Vs was demonstrated with 80% loading ratio of P2EHA. The effective experimental method and important results as we showcased in this work can be applied to drive crystallization and optimize film morphology of small-molecule organic semiconductors other than TIPS pentacene.
机译:在本研究中,我们报告说,小分子有机半导体和聚合物添加剂之间的垂直相分离可用于驱动半导体结晶,增强薄膜形态,提高溶液加工有机薄膜晶体管的装置性能(OTFT) 。当证明6,13-​​双(三异丙基甲酰基乙烯基)五烯(TIPS丙烯酰基乙烯基)作为基准半导体材料以与聚丙烯酸酯聚合物添加剂(2-乙基己酸酯)(P2EHA)共混时,发现在尖端之间发生垂直相位偏析五苯和P2EHA,提供各向异性半导体结晶的诱惑,并导致电荷传输界面处的尖端五烯烯浓度升高。因此,通过改变P2eha聚合物添加剂的负载比,获得了在面积覆盖,粒宽和晶体取向方面的独特提示五旬节薄膜形态。制造底栅和底部接触OTFTs以测试电荷传输,并以80%的p2eha的负载比率证明了高达0.27cm / vs的空穴迁移率。我们在这项工作中展示的有效实验方法和重要结果可以应用于驱动结晶并优化除了尖端五烯的小分子有机半导体的薄膜形态。

著录项

  • 来源
    《Journal of materials science》 |2020年第6期|4503-4510|共8页
  • 作者单位

    Department of Electrical and Computer Engineering The University of Alabama Tuscaloosa AL 35487 USA;

    Key Laboratory for Precision and Non-traditional Machining Technology of the Ministry of Education Dalian University of Technology Dalian Liaoning 116024 China;

    Electrical and Computer Engineering Penn State Behrend Erie PA 16563 USA;

    Department of Electrical Engineering Columbia University New York NY 10027 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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