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Orthogonal Liquid Crystal Alignment Layer: Templating Speed-Dependent Orientation of Chromonic Liquid Crystals

机译:正交液晶取向层:色度液晶的模板速度依赖性取向

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Lyotropic chromonic liquid crystals (LCLCs) have been extensively studied because of the interesting structural characteristics of the linear aggregation of their plank-shaped molecules in aqueous solvents. We report a simple method to control the orientation of LCLCs such as Sunset Yellow (SSY), disodium cromoglycate (DSCG), and DNA by varying pulling speed of the top substrate and temperatures during shear flow induced experiment. Crystallized columns of LCLCs are aligned parallel and perpendicular to the shear direction, at fast and slow pulling speeds of the top substrate, respectively. On the basis of this result, we fabricated an orthogonally patterned film that can be used as an alignment layer for guiding rodlike liquid crystals (LCs) to generate both twisted and planar alignments simultaneously. Our resulting platform can provide a facile method to form multidirectional orientation of soft materials and biomaterials in a process of simple shearing and evaporation, which gives rise to potential patterning applications using LCLCs due to their unique structural characteristics.
机译:由于水性溶剂中的层状分子的线性聚集的有趣结构特性,已经广泛研究了升调色素液晶(LCLC)。我们报告了一种简单的方法,可以通过改变顶部基板的拉速和剪切流动诱导的实验期间,通过改变顶部基板的拉速和温度的拉速来控制LCLC的方向。 LCLC的结晶柱分别在顶部基板的快速和慢拉速度下平行和垂直于剪切方向对齐。在该结果的基础上,我们制造了一种正交图案的薄膜,其可以用作用于引导杆状液晶(LCS)的对准层,以同时产生双绞线和平面对准。我们的所得平台可以提供一种容易的方法,可以在简单的剪切和蒸发过程中形成软材料和生物材料的多向取向,这导致使用LCLC的潜在图案化应用,这是由于它们独特的结构特征。

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