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Light control of cholesteric liquid crystals using azoxy-based host materials

机译:使用基于甲氧基的基质材料控制胆甾型液晶

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The characteristics of cholesteric liquid crystals can be controlled by light irradiation if conformationally photo-active molecules are present. Recently, control of the selective reflection band (spiral pitch) in nemato-chiral mixtures was demonstrated when photosensitive molecules, namely nematic azoxy-based compounds, were used as the host material. In this report, the investigation of light induced effects in cholesterics with azoxy-based host materials is continued to highlight the mechanisms of the response. Different non-photosensitive chiral materials were added to different azoxy-nematic liquid crystals and the pitch change caused by UV irradiation was investigated. A change in the pitch of 50-210 nm was observed depending on the exposure time and the intensity of the light. This effect is reversible: under illumination at wavelengths greater than 410 nm, the pitch shifts in the opposite direction. The dependence of the selective reflection band and the full-width-at-half-maximum of the band on the exposure time and the temperature dependence of the selective reflection band were investigated. The lowering of the phase transition temperature and narrowing of the width of the selective reflection band can be explained by a decrease in the orientational order parameter. The blue shift of the selective reflection band is due to a decrease in both the order parameter and the concentration of linear nematogenic molecules.
机译:如果存在构象光敏分子,则可以通过光照射来控制胆甾型液晶的特性。近来,当光敏分子,即向列的基于乙二氧基的化合物被用作主体材料时,证明了对线型-手性混合物的选择性反射带(螺距)的控制。在本报告中,继续研究基于偶氮氧基的基质材料对胆甾醇的光诱导作用,以突出反应的机理。将不同的非光敏手性材料添加到不同的乙氧基向列型液晶中,并研究了由紫外线照射引起的间距变化。根据曝光时间和光强度,观察到间距在50-210nm之间变化。这种效果是可逆的:在波长大于410 nm的照明下,间距沿相反方向移动。研究了选择性反射带和该半峰全宽对曝光时间和选择性反射带的温度依赖性的依赖性。相变温度的降低和选择性反射带的宽度的缩小可以通过降低取向阶数参数来解释。选择性反射带的蓝移是由于顺序参数和线性杀线虫分子浓度的降低。

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