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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Three-dimensional orientational order in the bulk and on the surface of polymer films and its effect on liquid-crystal alignment
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Three-dimensional orientational order in the bulk and on the surface of polymer films and its effect on liquid-crystal alignment

机译:聚合物薄膜的整体和表面上的三维取向顺序及其对液晶取向的影响

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摘要

The correlation between orientation ordering of polymer chains in the bulk of polymer film and at the polymer-liquid-crystal (LC) interface has been studied to determine it's role in LC alignment. The bulk and surface ordering of polymer were investigated by null ellipsometry and x-ray reflectivity, respectively. Two kinds of liquid-crystalline polymers were used; side-chain azopolymers with azochromophores containing hydrophobic OC4H9 alkyl chain (P1) and strongly polar NO2 group (P2) as the end substituents. The uniaxial tilt orientation of azochromophores in the films of both polymers was induced by the oblique irradiation with unpolarized UV light. The two polymers exhibit similar chain orientation but different ordering of azochromophores on the surface of the films of P1 and P2. Surface ordering of P1 films correlates very well with the order in the bulk of the film, which are essentially determined by the UV exposure. However, orientational order of polymer chains at the surface of P2 films is different from that in its bulk and is not determined by UV exposure. This is explained by strong aggregation of azochromophores during its self-assembling at the polymer-air interface. The LC alignment is determined by the surface ordering of azochromophores. The results imply that ordering tendency can be effectively transferred from polymer bulk to polymer surface and then to LC if it is not lost at the polymer-LC interface.
机译:研究了聚合物膜主体中和聚合物-液晶(LC)界面上的聚合物链的取向顺序之间的相关性,以确定其在LC取向中的作用。分别通过零椭偏法和X射线反射率研究了聚合物的体积和表面有序性。使用了两种液晶聚合物。带有疏水性OC4H9烷基链(P1)和强极性NO2基团(P2)作为末端取代基的偶氮发色团的侧链偶氮聚合物。两种聚合物薄膜中偶氮发色团的单轴倾斜取向是通过非偏振紫外光的倾斜照射引起的。两种聚合物在P1和P2膜的表面上具有相似的链取向,但偶氮发色团的顺序不同。 P1薄膜的表面排序与薄膜主体中的顺序非常相关,而这些顺序主要由UV暴露确定。但是,P2薄膜表面的聚合物链的取向顺序与其整体上的顺序不同,并且不受紫外线照射的影响。这可以通过偶氮发色团在聚合物-空气界面自组装期间的强聚集来解释。 LC排列是由偶氮发色团的表面顺序决定的。结果表明,如果在聚合物-LC界面上没有丢失,则排序趋势可以有效地从聚合物本体转移到聚合物表面,再转移到LC。

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