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Multiple functionalization of tungsten disulfide inorganic nanotubes by covalently grafted conductive polythiophenes

机译:共价接枝导电聚噻吩的钨二硫醚无机纳米管的多重官能化

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According to the “polymer growth from surface” concept, a variety of dual phase polythiophene–tungsten disulfide inorganic nanotube (PTh–WS _(2) INT) composites have been successfully prepared. This concept has made use of a covalent approach of liquid phase oxidative polymerization (LPP) directly from a WS _(2) INTs surface. In contrast to a simple bulk LPP, this oxidative polymerization variant enables an effective way to control the interfacial polythiophene-based layering. Various chemically stable nanometric polyTh adlayers have been generated towards morphologically well-defined core–shell WS _(2) INTs/polymer composites. The introduced free carboxylic acid groups, arising from the COOH-functionalized thiophene monomers, seriously improve the functional WS _(2) INTs dispersability, and thus, provide a versatile route for additional step surface modifications. This study has opened the attractive possibility of achieving high charge mobility via a two-dimensional transport through the WS _(2) INTs/polymer interface, combined with mobility anisotropy through the crystalline domains of grafted polymer shells.
机译:根据“来自表面的聚合物生长”概念,已经成功制备了各种双相聚噻吩 - 钨二硫化物无机无机纳米管(PTH-WS _(2)int)复合材料。该概念已经利用了液相氧化聚合(LPP)的共价方法,直接来自WS _(2)个INTS表面。与简单的散装LPP相比,该氧化聚合变体能够控制基于界面聚噻吩的层状的有效方法。已经产生了各种化学稳定的纳米多晶硅末端,朝向形态学上定义的核心壳WS _(2)个INTS /聚合物复合材料产生。引入的游离羧酸基团由COOH官能化的噻吩单体引起,严重改善功能性Ws_(2)的可分散性,因此提供了一种通用的途径,以进行额外的步骤表面改性。该研究开通了通过通过WS _(2)个Ints /聚合物界面的二维传输来实现高电荷迁移率的有吸引力的可能性,通过接枝聚合物壳的结晶结构域与迁移率各向异性联合。

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