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首页> 外文期刊>Reactive & Functional Polymers >Rational design of surface-confined nanostructured self-assemblies based on functional comb-shaped copolymers for tunable molecular orientation
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Rational design of surface-confined nanostructured self-assemblies based on functional comb-shaped copolymers for tunable molecular orientation

机译:基于功能梳形共聚物的可调谐分子取向的表面狭窄纳米结构自组装的合理设计

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Functional ultrathin nanoarchitectures are commonly based on hierarchical molecular self-assemblies that are structurally tunable and facilely fabricable, and have found a broad range of potential applications from nanoelectronics to biosensors. Here, we demonstrate a simple and elegant approach for the rational design of ultrathin molecular nanoarchitectures for tunable interfacial orientation of liquid crystals (LCs) using the surfaceconfinement of functional amphiphilic copolymers. The surface-confined nanostructured self-assemblies are simply prepared by introducing common functional polymers into amphiphilic systems. The surface-confined copolymeric nanoalignment layer, which is constructed from the simple doping and molecular self-assembly of comb-shaped amphiphilic copolymers in a confined LC medium, comprises a hydrophobic polyacrylate segment with a long side chain moiety capable of uniformly controlling the LC alignment and a hydrophilic polyacrylic acid segment with a carboxylic acid group confined to the hydrophilic surface of indium tin oxide substrate. The combination of structural variations on amphiphilic copolymer system and tunability of molecular orientation makes the surface-confined copolymeric nano-assemblies highly attractive ultrathin nanoarchitectures. The resulting nanostructured self-assemblies exhibit a spontaneous and uniform vertical orientation of LC molecules, simultaneously providing the LC device with a superfast electro-optical switching time and a strong surface anchoring control.
机译:功能性超薄纳米建筑通常基于结构上可调谐并且易于制造的分层分子自组装,并已发现从纳米电子学到生物传感器的广泛潜在应用。在这里,我们使用官能两亲共聚物的表面纯净进行了一种简单而优雅的液晶(LCS)可调界面取向的理性设计方法。通过将共同的官能聚合物引入两亲物质系统中,简单地制备表面狭窄的纳米结构的自组装。表面狭窄的共聚物纳米纳米纳米醛层由围绕LC培养基中的梳形两亲性共聚物的简单掺杂和分子自组装构成,包括具有长侧链部分的疏水性聚丙烯酸酯,能够均匀地控制LC对准和具有羧酸基团的亲水性聚丙烯酸区段,限制在氧化铟锡基底的亲水表面。两亲共聚物体系对结构变化的组合和分子取向的可调性使得表面狭窄的共聚物纳米组件具有高吸引力的超薄纳米构造。所得纳米结构的自组装具有LC分子的自发性和均匀垂直取向,同时提供具有超级电光切换时间和强表面锚固控制的LC器件。

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