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首页> 外文期刊>Advanced Functional Materials >Butadienes as novel photochromes for color tuning of cholesteric glasses: Influence of microscopic molecular reorganization within the helical superstructure
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Butadienes as novel photochromes for color tuning of cholesteric glasses: Influence of microscopic molecular reorganization within the helical superstructure

机译:丁二烯作为用于胆甾醇玻璃颜色调整的新型光致变色剂:螺旋上层结构内微观分子重组的影响

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1-(Alkoxyphenyl)-4-(cyanophenyl)buta-1E,3E-dienes have been used as novel photoresponsive dopants for investigating light-induced changes in the pitch of a glass-forming cholesteric liquid crystal (CLC), dicholesteryl-10,12-docosadiynedioate. X-ray diffraction studies have helped to establish the role of microscopic changes of smectic domains within the helical superstructure, induced by the dopant molecules and their photoisomers, which result in changes in their macroscopic light-reflecting properties. Increasing concentration (1-12 wt.-%) of these dopants causes a dramatic red-shift in the wavelength of reflected light by the host CLC, extending it into the near-infrared region. The extent of red-shift depends strongly on the molecular length of the dopants and those possessing lengths between 25-28 Angstrom, namely 1-(octyloxyphenyl)-4-(cyanophenyl)buta-1E,3E-diene and 1-(decyloxyphenyl)-4-(cyanophenyl)buta-1E,3E-diene, exhibit the maximum shift (Deltalambda(max)=435 nm). Photoisomerization of these dopants leads to a blue-shift of the reflected light and this effect could be used to tune the light reflectivity of these mixtures over a large part of the visible region. The cholesteric pitch and hence the reflected light by these materials could be fixed in a glassy state by rapidly cooling them from their cholesteric temperatures to 0 degreesC. The efficacy of these materials for full-color photoimaging has also been demonstrated.
机译:1-(烷氧基苯基)-4-(氰基苯基)buta-1E,3E-二烯已被用作新型光响应性掺杂剂,用于研究光诱导的玻璃形成胆甾型液晶(CLC),二胆甾醇基10, 12-十二烷基二炔。 X射线衍射研究已帮助确立了由掺杂剂分子及其光异构体引起的螺旋超结构内近晶域微观变化的作用,从而导致其宏观光反射特性发生变化。这些掺杂剂浓度的增加(1-12 wt .-%)会导致主体CLC的反射光波长发生剧烈的红移,从而将其扩展到近红外区域。红移的程度强烈取决于掺杂剂的分子长度以及长度在25-28埃之间的掺杂剂,即1-(辛氧基苯基)-4-(氰基苯基)buta-1E,3E-二烯和1-(癸氧基苯基) -4-(氰基苯基)丁1E,3E-二烯显示最大位移(Deltalambda(max)= 435 nm)。这些掺杂剂的光异构化导致反射光发生蓝移,该效应可用于调整这些混合物在大部分可见区域上的光反射率。通过将这些材料从其胆甾型温度迅速冷却至0℃,可以将胆甾型沥青以及由此这些材料的反射光固定为玻璃态。这些材料对全色光成像的功效也得到了证明。

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