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Wettability Control of Interfaces for High-Performance Organic Thin-Film Transistors by Soluble Insulating Polymer Films

机译:可溶性绝缘聚合物膜对高性能有机薄膜晶体管接口的润湿性控制

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Organic small-molecule semiconductors have higher carrier mobility compared to polymer semiconductors, while the actual performances of these materials are susceptible to morphological defects and misalignment of crystalline grains. Here, a new strategy is explored to control the crystallization and morphologies of a solution-processed organic small-molecule semiconductor 2,7-dioctyl[1]benzothieno[3,2-b ][1]benzothiophene (C8-BTBT) using soluble polymer films to control the wettability of substrates. Different from the traditional surface modification method, the polymer layer as a modification layer is soluble in the semiconductor solution during the fabrication of organic thin-film transistors (OTFTs). The dissolved polymer alters the state of the semiconductor solution, which in turn, changes the crystallographic morphologies of the semiconductor films. By controlling the solubility and thickness of the polymer modification layers, it is possible to regulate the grain boundary and domain size of C8-BTBT films, which determine the performances of OTFTs. The bottom-gate transistors modified by a thick PS layer exhibit a mobility of >7 cm~(2)/V·s and an on/off ratio of >10~(7). It is expected that this new modification method will be applicable to high-performance OTFTs based on other small molecular semiconductors and dielectrics.
机译:与聚合物半导体相比,有机小分子半导体具有更高的载流子迁移率,而这些材料的实际性能易受形态缺陷和结晶颗粒的未对准。在此,探讨了一种新的策略来控制溶液加工的有机小分子半导体2,7-二辛基[1]苯并噻吩[3,2- b] [1]苯并噻吩(C8-BTBT)的结晶和形态)使用可溶性聚合物膜来控制基材的润湿性。与传统的表面改性方法不同,在制造有机薄膜晶体管(OTFTS)期间,聚合物层可溶于半导体溶液中。溶解的聚合物改变了半导体溶液的状态,这又改变了半导体膜的晶体形态。通过控制聚合物改性层的溶解度和厚度,可以调节C8-BTBT薄膜的晶界和域尺寸,其确定OTFT的性能。由厚PS层改性的底栅晶体管表现出> 7cm〜(2)/ V·s的迁移率和开/关比> 10〜(7)。预计这一新的修改方法将适用于基于其他小分子半导体和电介质的高性能OTFTS。

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