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Dielectrophoretic manipulation of the mixture of isotropic and nematic liquid

机译:各向同性和向列液体混合物的介电泳操作

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In various applications involving liquid crystals, the manipulation of the nanoscale molecular assembly and microscale director alignment is highly useful. Here we show that a nematic-isotropic mixture, a unique bi-liquid system, has potential for the fabrication of microstructures having an ordered phase within a disordered phase, or vice versa. The volume expansion and shrinkage, migration, splitting, mergence and elongation of one phase within the other are easily accomplished via thermal treatment and dielectrophoretic manipulation. This is particularly achievable when one phase is suspended in the middle. In that case, a highly biased ordered-phase preference of surfaces, that is, the nematic-philic nature of a polyimide layer and the nematic-phobic nature of a self-assembled monolayer of chlorosilane derivatives, is used. Further, by combining this approach with photopolymerization, the patterned microstructure is solidified as a patterned polymer film having both isotropic and anisotropic molecular arrangements simultaneously, or as a template with a morphological variation.
机译:在涉及液晶的各种应用中,纳米级分子组装和微级指向矢对准的操纵非常有用。在这里,我们表明,向列各向同性的混合物,独特的双液体系,具有制造具有无序相内有序相的微结构的潜力,反之亦然。一相在另一相中的体积膨胀和收缩,迁移,分裂,合并和伸长很容易通过热处理和介电电泳来完成。当一相悬浮在中间时,这尤其可实现。在那种情况下,使用表面的高度偏向的有序相偏好,即,聚酰亚胺层的向列亲电性质和氯硅烷衍生物的自组装单层的向列疏液性质。此外,通过将该方法与光致聚合相结合,将图案化的微结构固化为同时具有各向同性和各向异性分子排列的图案化的聚合物膜,或者固化为具有形态变化的模板。

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