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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Fabrication of photomobile polymer materials with phase-separated structure of crosslinked azobenzene liquid-crystalline polymer and poly(dimethylsiloxane)
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Fabrication of photomobile polymer materials with phase-separated structure of crosslinked azobenzene liquid-crystalline polymer and poly(dimethylsiloxane)

机译:具有相分离的交联偶氮苯液 - 晶体聚合物和聚(二甲基硅氧烷)的相分离结构的光瘤聚合物材料的制备

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摘要

Composite systems of liquid crystals (LCs) and polymers have been extensively studied in various forms such as polymer-dispersed LCs and polymer-stabilised LCs. Blending LCs and polymers is an effective approach to design functional materials with stimuli responsiveness and durability. Here, we show the development of a novel composite material with crosslinked azobenzene LC polymer (PAzo) and poly (dimethylsiloxane) (PDMS) aiming at the improvement of photomobile polymer materials in mechanical properties. The composite films were prepared by photopolymerisation of azobenzene monomers in PDMS elastomers. By forming phase separated structure, in which PAzo chains were dispersed in PDMS matrix, fracture strain of photomobile polymer materials was significantly enhanced. The composite film showed macroscopic bending upon irradiation with UV light. This result implies that PAzo domains in polymer matrix can work as microactuators to afford macroscopic deformation of the whole film. The further improvement of this system in photomechanical properties would be feasible through adequate control of composition and the alignment of mesogens.
机译:已经以各种形式进行了诸如聚合物分散的LC和聚合物稳定的LCs的各种形式进行了液晶(LCS)和聚合物的复合系统。混合LC和聚合物是设计具有刺激反应性和耐用性功能材料的有效方法。在此,我们展示了具有交联偶氮苯LC聚合物(PAZO)和聚(二甲基硅氧烷)(PDMS)的新型复合材料的发展,其旨在改善力学性质中的力学性质。通过在PDMS弹性体中的偶氮苯单体的光聚合制备复合膜。通过形成相分离的结构,其中在PDMS基质中分散了Pazo链,显着提高了光瘤聚合物材料的断裂菌株。复合膜在用UV光照射时显示宏观弯曲。该结果意味着聚合物基质中的Pazo结构域可以作为微致动器,以提供整个膜的宏观变形。通过对组合物的适当控制和蛋白质的对准,可以在光学力学性质中进一步改善在光学力学性质中是可行的。

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