Novel Optical Functions of Compounds Derived from Cholesterol

N. Tamaoki
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Abstract

A new cholesteric liquid crystals that respond quickly to stimuli such as temperature change or photoreaction of a doped compound in a liquid crystalline phase were found and stable molecular ordering below 80°C in the solid state brought about by rapid cooling from the liquid crystalline phase was noted. By changing the temperature at which rapid cooling start or degree of photoisomerization of photochromic compounds, colors from the visible spectral region reversibly fixed as interference colors. The compounds exhibited surface-directed self-assembly in a helical molecular ordering to form optically reflecting solid film on spin-coating from solution. All these may be considered properties of liquid crystals of medium-molecular-weight with over 1000 mass units. Through these properties, it is possible to obtain a re-writable full color recording in a photon or thermal mode.
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胆固醇衍生化合物的新光学功能
发现了一种新的胆甾液晶,该液晶对温度变化或掺杂化合物在液晶相中的光反应等刺激反应迅速,并且注意到从液晶相快速冷却带来的固态稳定的分子有序。通过改变快速冷却开始的温度或光致变色化合物的光异构化程度,可见光谱区域的颜色可逆地固定为干涉色。化合物表现出螺旋分子有序的表面定向自组装,在溶液自旋涂层上形成光学反射的固体薄膜。所有这些都可以被认为是质量单位超过1000的中等分子量液晶的性质。通过这些特性,可以在光子或热模式下获得可重写的全彩色记录。
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