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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Floating-non-solvent method for inducing the formation of highly crystalline conjugated polymer nanofibrils in the solution state for high-performance organic transistors
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Floating-non-solvent method for inducing the formation of highly crystalline conjugated polymer nanofibrils in the solution state for high-performance organic transistors

机译:浮动 - 非溶剂方法诱导高性能有机晶体管溶液状态中高晶缀合聚合物纳米纤维的形成

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We developed a facile dip-coating printing method using a floating non-solvent (FNS) that produced highly crystalline polymer semiconductor nanofibrils. This FNS dip-coating method used a bi-phasic solution comprising a polymer semiconductor main solution, on top of which was floated a non-solvent phase. We demonstrated that the non-solvent diffused into the underlying polymer-containing main solution and induced the formation of highly crystalline polymer nanofibrils over time. We tested four different floated non-solvent phases and systematically compared the miscibility of the floated phases and the underlying polymer solution as a function of their Hansen solubility parameters (HSPs). We demonstrated that the HSP difference was correlated with the degree to which the floated non-solvent and the main solution intermixed, which affected polymer crystallization, the solution state stability, and the thickness of the resulting dip-coated P3HT thin film over time. The FNS-processed dip-coated thin films were used to fabricate P3HT transistors, and the field-effect charge carrier mobilities of the devices were measured.
机译:我们开发了一种使用浮动非溶剂(FNS)的容易浸涂印刷方法,其产生高晶体聚合物半导体纳米纤维。该FNS浸涂方法使用包含聚合物半导体主溶液的双相溶液,其顶部浮出的非溶剂相。我们证明,非溶剂扩散到含有含有聚合物的主要溶液中,并随时间诱导高结晶聚合物纳米纤维的形成。我们测试了四种不同的浮动非溶剂阶段,并系统地将漂浮相和底层聚合物溶液的混溶性与其汉森溶解度参数(HSP)进行了稳定。我们证明了HSP差异与漂浮的非溶剂和混合的主要溶液的程度相关,这影响了聚合物结晶,溶液状态稳定性和所得浸涂的P3HT薄膜的厚度随时间随时间的推移。 FNS处理的浸涂薄膜用于制造P3HT晶体管,测量器件的场效应电荷载体迁移率。

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