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首页> 外文期刊>Advanced Functional Materials >Transparent Nanopaper-Based Flexible Organic Thin-Film Transistor Array
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Transparent Nanopaper-Based Flexible Organic Thin-Film Transistor Array

机译:基于透明纳米纸的柔性有机薄膜晶体管阵列

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摘要

Eco-friendly and low-cost cellulose nanofiber paper (nanopaper) is a promising candidate as a novel substrate for flexible electron device applications. Here, a thin transparent nanopaper-based high-mobility organic thin-film transistor (OTFT) array is demonstrated for the first time. Nanopaper made from only native wood cellulose nanofibers has excellent thermal stability (>180 ℃) and chemical durability, and a low coefficient of thermal expansion (CTE: 5-10 ppm K~(-1)). These features make it possible to build an OTFT array on nanopaper using a similar process to that for an array on conventional glass. A short-channel bottom-contact OTFT is successfully fabricated on the nanopaper by a lithographic and solution-based process. Owing to the smoothness of the cast-coated nanopaper surface, a solution processed organic semiconductor film on the nanopaper comprises large crystalline domains with a size of approximately 50-100 μm, and the corresponding TFT exhibits a high hole mobility of up to 1 cm~2 V~(-1) s~(-1) and a small hysteresis of below 0.1 V under ambient conditions. The nanopaper-based OTFT also had excellent flexibility and can be formed into an arbitrary shape. These combined technologies of low-cost and eco-friendly paper substrates and solution-based organic TFTs are promising for use in future flexible electronics application such as flexible displays and sensors.
机译:环保,低成本的纤维素纳米纤维纸(纳米纸)是有希望的候选材料,可作为柔性电子设备应用的新型基材。在这里,首次展示了基于透明纳米纸的高迁移率有机薄膜晶体管(OTFT)阵列。仅由天然木质纤维素纳米纤维制成的纳米纸具有出色的热稳定性(> 180℃)和化学耐久性,并且热膨胀系数低(CTE:5-10 ppm K〜(-1))。这些特征使得可以使用与传统玻璃上的阵列相似的工艺在纳米纸上构建OTFT阵列。通过平版印刷和基于溶液的工艺,在纳米纸上成功制造了短通道底部接触OTFT。由于流延涂覆的纳米纸表面的光滑性,纳米纸上的溶液处理的有机半导体膜包含尺寸约为50-100μm的大晶畴,相应的TFT表现出高达1 cm〜的高空穴迁移率在环境条件下为2 V〜(-1)s〜(-1),滞回电压低于0.1V。纳米纸基OTFT也具有优异的柔韧性,并且可以形成为任意形状。低成本,环保纸质基材和基于解决方案的有机TFT的这些组合技术有望在未来的柔性电子应用中使用,例如柔性显示器和传感器。

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  • 来源
    《Advanced Functional Materials 》 |2014年第12期| 1657-1663| 共7页
  • 作者单位

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

    The Institute of Scientific and Industrial Research Osaka University 8-1 Mihogaoka, Ibaraki, Osaka, 567-0047, Japan;

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

    The Institute of Scientific and Industrial Research Osaka University 8-1 Mihogaoka, Ibaraki, Osaka, 567-0047, Japan;

    Japan Broadcasting Corporation (NHK) Science and Technology Research Laboratories 1-10-11, Kinuta, Setagaya-ku, Tokyo, 157-8510, Japan;

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