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首页> 外文期刊>Journal of Molecular Liquids >Light- and electro- induced Fredericks transition in liquid crystal cells with photosensitive chalcogenide glasses surfaces As2S3
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Light- and electro- induced Fredericks transition in liquid crystal cells with photosensitive chalcogenide glasses surfaces As2S3

机译:光和电诱导的弗雷德里克斯在液晶细胞中过渡,用光敏硫属化物玻璃表面AS2S3

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摘要

In this paper we represent light- and electro- induced Fredericks transition in liquid crystal cells with 5 CB on thin photosensitive chalcogenide glassy films As2S3 as command surfaces. Easy axis reorientation in a cell with nematic liquid crystals under the low intensity illumination with non-polarized beam (0.7...2 mWt; 473 nm) and decreasing of the Fredericks transition in dc field were observed. We suggest that easy axis reorientation with the optical illumination in the presence of a dc electric field is due to a light-induced desorption process on the photosensitive surface As2S3. We believe that the decreasing of the Fredericks transition voltage is caused by light-induced free charges in chalcogenide layer that discharge electrical double layer on the LC - chalcogenide interface. As a consequence, the energy of interaction between the liquid crystal molecules and the constant electric field near the surface overcome the anchoring energy, and, as a result, the reorientation of the director of LC in polar plane takes place in this case. From this point of view the utilization of the effects of light-induced anisotropy in inorganic materials, in particular, in chalcogenide glasses for photoalignment of LCs looks very promising. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们在液晶细胞中代表光诱导的弗雷德里克在薄薄的光敏性硫族化合物玻璃膜AS2S3上用5CB的液晶细胞转变。观察到具有非偏振梁(0.7 ... 2MWT; 473nm)的低强度照射下的向甲型液晶的细胞中的轴重新定位和在DC场中的弗雷德里克转变的降低。我们建议在DC电场的存在下具有光学照明的容易的轴重新定位是由于光敏表面AS2S3上的光引起的解吸过程。我们认为弗雷德里克转变电压的降低是由硫族化物层中的光诱导的自由电荷引起的,该硫胺化物层在LC - 硫属化物界面上排出电双层。结果,液晶分子与表面附近的恒定电场之间的相互作用能量克服了锚定能量,结果,在这种情况下,在极性平面中的LC导向器的重新定向。从这个观点来看,利用光诱导的各向异性在无机材料中的效果,特别是在氯化物中的硫代化物玻璃,用于光敏的LCS的光共玻璃看起来非常有前途。 (c)2017年Elsevier B.V.保留所有权利。

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