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首页> 外文期刊>Progress in Polymer Science >Photoactive liquid crystalline polymer systems with light-controllable structure and optical properties
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Photoactive liquid crystalline polymer systems with light-controllable structure and optical properties

机译:具有光控结构和光学性质的光敏液晶聚合物体系

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The state-of-the-art in the field of molecular design, synthesis, phase behaviour and photooptical properties of photochromic liquid crystalline (LC) side chain polymers, their blends with chiral and photochromic low-molar-mass dopants, hydrogen-bonded photochromic LC polymer systems, as well as photoresponsive LC dendrimers, is reviewed. The molecualr architecture of the LC photochromic LC polymer systems, as well as photoresponsive LC dendrimers, is reviewed. The molecualr architecture of the LC polymers and photochemical reactions of the main types of low-molar-mass chiral and chiral photochromes are briefly described. Recent advances in research dealing with the syn thesis and study of optical and photooptical properties of a series of photochromic LC polymers bearing nematogenic and photochromic side groups forming nematic, smectic and cholesteric mesophases are considered. Among the various types of photochromic systems used to obtain the photoresponsive LC polymers the main attention focus on the so-called combhined multifunctional systems composed of nematogenic, chiral and one or two photochromic fragments incorporated in the same monomr units or entirely into the macromolecule as individual monomers. The systems of both types from chiral nematic (cholesteric) phase with helical supramolecular structure. Polymerc cholesteric films with planar orientation exhibit a selective reflection of light in the visible or IR spectral range. The action of light leads to the isomeriztion of both chiral photochromic groups (or the photochromic group alone), which results in the variation of the helical twisting power of the chiral fragments. This process is accompanied by sharp changes in the supramolecular helical structure and the optical properties of the polymer. By properly selecting the copolymer composition and preparing blends of the LC polymers with low-molar-mass chiral and photochromic dopants, using hydrogen-bonded systems, it is possible to obtain materials with differennt characters of the the light-induced transformations. In particular, this provides the ability of controlling the pitch of the helix, the rate of helix twising and untwising, the width of the selective light reflection peak, etc. The last part of reviews covers a relatively new class of LC compounds-LC photochromic dendrimers, whose photochemical and photooptical properties are briefly discussed. The photochormic LC copolymers under consideration offer new promising materials for reversible and irreversible black/white and colour data recording that can be used in optoelectronics, data storage (in optical memory systems), holography, and colour projection techniques and give rise to a new generation of video discs, flat light guides and coatings with controllable optical properties.
机译:光致变色液晶(LC)侧链聚合物的分子设计,合成,相行为和光光学性质方面的最新技术,以及它们与手性和光致变色低摩尔质量掺杂剂的共混物,氢键光致变色审查了液晶聚合物系统以及光敏液晶树状聚合物。审查了LC光致变色LC聚合物系统的分子结构以及光敏LC树枝状聚合物。简要介绍了LC聚合物的分子结构和主要类型的低摩尔质量手性和手性光致染料的光化学反应。考虑了在合成和研究一系列形成形成向列,近晶和胆甾型中间相的具有生线和光致变色侧基的光致变色LC聚合物的光学和光光学性质方面的研究进展。在用于获得光响应性LC聚合物的各种类型的光致变色系统中,主要的注意力集中在所谓的组合多官能系统上,该系统由生瘤,手性和一个或两个光致变色片段组成,并入相同的单体单元中,或单独地完全掺入大分子中。单体。两种类型的系统均来自具有螺旋超分子结构的手性向列(胆甾型)相。具有平面取向的聚合物胆甾型膜在可见或红外光谱范围内显示光的选择性反射。光的作用导致两个手性光致变色基团(或单独的光致变色基团)的异构化,这导致手性片段的螺旋扭曲力的变化。该过程伴随着超分子螺旋结构和聚合物光学性质的急剧变化。通过适当地选择共聚物组成并使用氢键体系制备LC聚合物与低摩尔质量手性和光致变色掺杂剂的共混物,可以获得具有光诱导转变的不同特征的材料。特别是,这提供了控制螺旋的螺距,螺旋扭曲和解旋的速率,选择性光反射峰的宽度等的能力。审查的最后部分涵盖了一类相对较新的LC化合物-LC光致变色树枝状大分子,其光化学和光光学性质进行了简要讨论。正在考虑的光致变色LC共聚物为可逆和不可逆的黑白和彩色数据记录提供了新的有前途的材料,可用于光电,数据存储(在光学存储系统中),全息术和彩色投影技术,并催生了新一代视盘,平面光导和光学性能可控的涂层。

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