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液晶物理凝胶

Liquid-crystalline physical gels.

作者信息

Kato Takashi, Hirai Yuki, Nakaso Suguru, Moriyama Masaya

机构信息

Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Chem Soc Rev. 2007 Dec;36(12):1857-67. doi: 10.1039/b612546h. Epub 2007 Sep 3.

Abstract

Liquid-crystalline (LC) physical gels are a new class of dynamically functional materials consisting of liquid crystals and fibrous aggregates of molecules that are called "gelators". Liquid-crystalline physical gels, which are macroscopically soft solids, exhibit induced or enhanced electro-optical, photochemical, electronic properties due to the combination of two components that form phase-separated structures. In this tutorial review, we describe the materials design and structure-property relationships of the LC physical gels. The introduction of self-assembled fibers into nematic liquid crystals leads to faster responses in twisted nematic (TN) mode and high contrast switching in light scattering mode. Furthermore, the LC physical gels can be exploited as a new type of materials for electro-optical memory. This function is achieved by the control of reversible aggregation processes of gelators under electric fields in nematic liquid crystals. Electronic properties such as hole mobilities are improved by the introduction of fibrous aggregates into triphenylene-based columnar liquid crystals. The incorporation of photochromic azobenzenes or electroactive tetrathiafulvalenes into the chemical structures of gelators leads to the preparation of ordered functional materials.

摘要

液晶(LC)物理凝胶是一类新型的动态功能材料,由液晶和被称为“凝胶剂”的分子纤维聚集体组成。液晶物理凝胶在宏观上是软固体,由于形成相分离结构的两种成分的结合,表现出诱导或增强的电光、光化学、电子特性。在本教程综述中,我们描述了液晶物理凝胶的材料设计及其结构与性能的关系。将自组装纤维引入向列型液晶中会在扭曲向列(TN)模式下产生更快的响应,并在光散射模式下实现高对比度切换。此外,液晶物理凝胶可被用作一种新型的电光存储器材料。该功能是通过在向列型液晶中电场作用下控制凝胶剂的可逆聚集过程来实现的。通过将纤维聚集体引入基于三亚苯的柱状液晶中,空穴迁移率等电子特性得到了改善。将光致变色偶氮苯或电活性四硫富瓦烯引入凝胶剂的化学结构中,导致了有序功能材料的制备。

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