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首页> 外文期刊>Chemical Physics Letters >Liquid crystal alignment on periodic microstructure induced by single-beam 532 nm polarized laser illumination on poly(urethane-imide) film
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Liquid crystal alignment on periodic microstructure induced by single-beam 532 nm polarized laser illumination on poly(urethane-imide) film

机译:聚酰亚胺薄膜上单光束532 nm偏振激光照射引起的周期性微观结构上的液晶取向

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摘要

After illumination by single-beam polarized pulse laser (532 nm) with energies below the ablation threshold energy, periodic microstructure was prepared on an azobenzene-containing poly(urethane-imide) (PUI) film surface. The reflective polarized IR results proved that the azobenzene group tended to be oriented perpendicular to the surface periodic microstructure. The illuminated PUI surface was used as the alignment layer of liquid crystal (LC) molecules. The experimental results indicated that the LC molecules tended to align closely along the surface microgrooves of the surface periodic microstructure. But the anchoring energy of LC molecules on the PUI film surface was smaller than that calculated based on the Berreman theory, which indicated that LC alignment on the laser-illuminated PUI film surface was controlled by the surface microgrooves and anisotropic orientation of the azobenzene group. (C) 2003 Elsevier B.V. All rights reserved. [References: 21]
机译:用能量低于消融阈值能量的单光束偏振脉冲激光(532 nm)照射后,在含偶氮苯的聚氨基甲酸酯(PUI)膜表面上制备了周期性的微结构。反射偏振IR结果证明,偶氮苯基团倾向于垂直于表面周期性微观结构取向。照亮的PUI表面用作液晶(LC)分子的取向层。实验结果表明,LC分子倾向于沿着表面周期性微结构的表面微沟槽紧密排列。但是,LC分子在PUI膜表面的锚固能小于基于Berreman理论计算的锚固能,这表明激光照射的PUI膜表面的LC取向受偶氮基的表面微沟槽和各向异性取向控制。 (C)2003 Elsevier B.V.保留所有权利。 [参考:21]

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