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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Light-responsive chiral photochromic liquid crystalline polymer systems
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Light-responsive chiral photochromic liquid crystalline polymer systems

机译:光响应手性光致变色液晶聚合物系统

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The authors reviewed results obtained in recent years in the field of development of advanced optically controlled polymer systems based on photochromic cholesteric liquid crystalline (LC) polymers and their blends with each other and with low-molar-mass chiral and photochromic dopants. Recent advances in the research dealing with the design and study of photo-optical properties of photoresponsive LC polymers composed of nematogenic, chiral an done or two photochromic fragments incorporated in the same monomer units or entirely into the macromolecule as individual monomers are discussed. All polymer systems form cholesteric phase with a helical supramolecular structure. The light irradiation leads to the isomerization of one or two photochromic groups, which results in the variation in the helical twisting power of chiral fragments. This process is accompanied by dramatic changes in the supramolecular helical structure and optical properties of the LC polymer. This provides the possibility for controlling the pitch of helix, the rate of helix twisting and untwisting, spectral range, and the width of the selective light reflection. The photochromic LC systems offer new promising materials for reversible and irreversible colour data recording that can be used in optical memory systems (data storage), holography, colour projection techniques and give rise to a new generation of videodiscs, flat light guides and coatings with photocontrollable optical properties.
机译:作者回顾了近年来在基于光致变色胆甾型液晶(LC)聚合物及其相互之间以及与低摩尔质量手性和光致变色掺杂剂的共混物的先进光控聚合物系统开发领域中获得的结果。讨论了设计和研究光敏性LC聚合物的光光学性质的最新研究进展,这些光敏性LC聚合物是由杀虫剂,手性剂或两个光致变色片段组成的,这些片段与单个单体或与单个单体完全结合在大分子中。所有聚合物体系形成具有螺旋超分子结构的胆甾相。光照射导致一个或两个光致变色基团的异构化,这导致手性片段的螺旋扭曲力变化。该过程伴随着LC聚合物的超分子螺旋结构和光学性质的巨大变化。这提供了控制螺旋的螺距,螺旋扭曲和解旋的速率,光谱范围以及选择性光反射的宽度的可能性。光致变色LC系统为可逆和不可逆的彩色数据记录提供了新的有希望的材料,可用于光学存储系统(数据存储),全息术,彩色投影技术,并产生了新一代的视频光盘,平面光导和具有光控性的涂层光学性质。

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