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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Dynamic Interfacial Regulation by Photodeformable Azobenzene-Containing Liquid Crystal Polymer Micro/Nanostructures
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Dynamic Interfacial Regulation by Photodeformable Azobenzene-Containing Liquid Crystal Polymer Micro/Nanostructures

机译:可光可变偶氮苯液晶聚合物微/纳米结构的动态界面调节

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摘要

Photoresponsive materials offer local, temporal, and remote control over their chemical or physical properties under external stimuli, giving new tools for interfacial regulation. Among all, photodeformable azobenzene-containing liquid crystal polymers (azo-LCPs) have received increasing attention because they can be processed into various micro/nanostructures and have the potential to reversibly tune the interfacial properties through chemical and/or morphological variation by light, providing effective dynamic interface regulation. In this feature article, we highlight the milestones in the dynamic regulation of different interfacial properties through micro/nanostructures made of photodeformable azobenzene-containing liquid crystal polymers (azo-LCPs). We describe the preparation of different azo-LCP micro/nanostructures from the aspects of materials and processing techniques and reveal the importance of mesogen orientation toward dynamic interfacial regulation. By introducing our recently developed linear azo-LCP (azo-LLCP) with good mechanical and photoresponsive performances, we discuss the challenge and opportunity with respect to the dynamic light regulation of two- and three-dimensional (2D/3D) micro/nanostructures to tune their related interfacial properties. We have also given our expectation toward exploring photodeformable micro/nanostructures for advanced applications such as in microfluidics, biosensors, and nanotherapeutics.
机译:光响应材料在外部刺激下提供局部,时间和遥控物,为其在外部刺激下进行化学或物理性质,为界面调节提供新的工具。其中,含可光可变的偶氮苯的液晶聚合物(AZO-LCP)已经接受了越来越长的关注,因为它们可以被加工成各种微/纳米结构并具有通过光线的化学和/或形态变异来可逆地调谐界面性质的潜力有效的动态接口调节。在本特征文章中,我们通过微/纳米结构通过由光可变偶氮苯的液晶聚合物(AZO-LCP)制成的微/纳米结构来突出强制对不同界面性质的动态调节。从材料和加工技术方面描述了不同偶氮-LCP微/纳米结构的制备,并揭示了介于原介质取向对动态界面调节的重要性。通过使用良好的机械和光散对性能介绍我们最近开发的线性AZO-LCP(AZO-LLCP),我们讨论了关于两维(2D / 3D)微/纳米结构的动态光调节的挑战和机会调整其相关的界面性质。我们还赋予我们对探索可光可制性的微/纳米结构的预期,以进行高级应用,例如微流体,生物传感器和纳米治疗剂。

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