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A New Era for Liquid Crystal Research: Applications of Liquid Crystals in Soft Matter Nano-, Bio- and Microtechnology

机译:液晶研究的新时代:液晶在纳米,生物和微技术软物质中的应用

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摘要

Liquid crystals constitute a fascinating class of soft condensed matter characterized by the counterin- tuitive combination of fluidity and long-range order. Today they are best known for their exceptionally successful application in flat panel displays, but they actually exhibit a plethora of unique and attractive properties that offer tremendous potential for fundamental science as well as innovative applications well beyond the realm of displays. Today this full breadth of the liquid crystalline state of matter is becoming increasingly recognized and numerous new and exciting lines of research are being opened up. We review this exciting development, focusing primarily on the physics aspects of the new research thrusts, in which liquid crystals e thermotropic as well as lyotropic e often meet other types of soft matter, such as polymers and colloidal nano- or microparticle dispersions. Because the field is of large interest also for researchers without a liquid crystal background we begin with a concise introduction to the liquid crystalline state of matter and the key concepts of the research field. We then discuss a selection of promising new directions, starting with liquid crystals for organic electronics, followed by nanotemplating and nanoparticle organization using liquid crystals, liquid crystal colloids (where the liquid crystal can constitute either the continuous phase or the disperse phase, as droplets or shells) and their potential in e.g. photonics and metamaterials, liquid crystal-functionalized polymer fibers, liquid crystal elastomer actuators, ending with a brief overview of activities focusing on liquid crystals in biology, food science and pharmacology.
机译:液晶构成了引人入胜的一类柔软的冷凝物,其特征是流动性和远距离有序相违背。今天,它们以在平板显示器上的非凡成功应用而闻名,但实际上,它们展现出众多独特而诱人的特性,这些特性为基础科学和创新应用提供了巨大的潜力,远远超出了显示器领域。如今,物质的液晶状态的广度日益得到认可,并且许多新的令人振奋的研究领域也正在开放。我们回顾了这一令人振奋的进展,主要侧重于新的研究方向的物理方面,其中热致性液晶和溶致性液晶通常会遇到其他类型的软物质,例如聚合物和胶体纳米或微粒分散体。因为对于没有液晶背景的研究人员来说,该领​​域也引起了人们的极大兴趣,所以我们首先简要介绍物质的液晶状态和研究领域的关键概念。然后,我们讨论一系列有希望的新方向,从有机电子液晶开始,然后是使用液晶的纳米模板和纳米粒子组织,液晶胶体(其中液晶可以以液滴或液滴的形式构成连续相或分散相)。壳)及其在例如光子学和超材料,液晶功能化的聚合物纤维,液晶弹性体致动器,最后简要概述了专注于生物学,食品科学和药理学方面的液晶的活动。

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  • 作者

    Lagerwall, Jan; Scalia, G.;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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