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胆甾相聚合物基质填充含偶氮苯的近晶混合物的光致可调光学性质。

Cholesteric Polymer Scaffolds Filled with Azobenzene-Containing Nematic Mixture with Phototunable Optical Properties.

机构信息

Fraunhofer Institute for Applied Polymer Research , Geiselbergstrasse 69, 14476 Potsdam-Golm, Germany.

Chemistry Department, Moscow State University , Lenin Hills 1, 119991 Moscow, Russia.

出版信息

ACS Appl Mater Interfaces. 2016 Oct 12;8(40):27227-27235. doi: 10.1021/acsami.6b09642. Epub 2016 Sep 28.

Abstract

The past two decades witnessed tremendous progress in the field of creation of different types of responsive materials. Cholesteric polymer networks present a very promising class of smart materials due to the combination of the unique optical properties of cholesteric mesophase and high mechanical properties of polymer networks. In the present work we demonstrate the possibility of fast and reversible photocontrol of the optical properties of cholesteric polymer networks. Several cholesteric photopolymerizable mixtures are prepared, and porous cholesteric network films with different helix pitches are produced by polymerization of these mixtures. An effective and simple method of the introduction of photochromic azobenzene-containing nematic mixture capable of isothermal photoinducing the nematic-isotropic phase transition into the porous polymer matrix is developed. It is found that cross-linking density and degree of polymer network filling with a photochromic nematic mixture strongly influence the photo-optical behavior of the obtained composite films. In particular, the densely cross-linked films are characterized by a decrease in selective light reflection bandwidth, whereas weakly cross-linked systems display two processes: the shift of selective light reflection peak and decrease of its width. It is noteworthy that the obtained cholesteric materials are shown to be very promising for the variety applications in optoelectronics and photonics.

摘要

在过去的二十年中,人们在不同类型响应性材料的制备领域取得了巨大的进展。胆甾聚合物网络由于胆甾相独特的光学性质和聚合物网络的高机械性能结合在一起,成为一类非常有前途的智能材料。在本工作中,我们证明了胆甾聚合物网络光学性质的快速和可逆光控的可能性。制备了几种光聚合性的胆甾混合物,并通过这些混合物的聚合制备了具有不同螺旋节距的多孔胆甾网络薄膜。开发了一种有效的、简单的方法,将含有光致变色偶氮苯的向列混合物引入到多孔聚合物基质中,该混合物能够等温光诱导向列-各向同性相转变。研究发现,光致变色向列混合物的交联密度和聚合物网络填充程度强烈影响所得复合膜的光-光行为。特别是,交联密度高的薄膜的特征在于选择性光反射带宽减小,而交联较弱的体系则显示出两个过程:选择性光反射峰的位移和其宽度的减小。值得注意的是,所得到的胆甾材料在光电学和光子学的各种应用中显示出很大的应用前景。

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