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自组装液晶显示取向层的发展

The development of self-assembled liquid crystal display alignment layers.

作者信息

Hoogboom Johan, Elemans Johannes A A W, Rowan Alan E, Rasing Theo H M, Nolte Roeland J M

机构信息

Institute for Molecules and Materials, Radboud University Nijmegen, Toernooiveld 1, 6525ED, The Netherlands.

出版信息

Philos Trans A Math Phys Eng Sci. 2007 Jun 15;365(1855):1553-76. doi: 10.1098/rsta.2007.2031.

Abstract

From simple pocket calculators to mobile telephones and liquid crystal display (LCD)-TV, over the past few decades, devices based on LCD technology have proliferated and can now be found in all conceivable aspects of everyday life. Although used in cutting-edge technology, it is surprising that a vital part in the construction of such displays, namely the alignment layer, relies essentially on a mechanical rubbing process, invented almost 100 years ago. In this paper efforts to develop alignment layers (also called command layers) by processes other than rubbing, namely self-assembly of molecular and macromolecular components will be discussed. Two topics will be presented: (i) tuneable command layers formed by stepwise assembling of siloxane oligomers and phthalocyanine dyes on indium tin oxide surfaces and (ii) command layers formed by self-assembly of porphyrin trimers. The potential use of these layers in sensor devices will also be mentioned.

摘要

从简单的袖珍计算器到移动电话以及液晶显示器(LCD)电视,在过去几十年里,基于液晶技术的设备大量涌现,如今在日常生活的各个方面都能见到。尽管液晶技术应用于前沿科技,但令人惊讶的是,这类显示器构造中的一个关键部分,即取向层,基本上仍依赖于近100年前发明的机械摩擦工艺。本文将探讨通过摩擦以外的其他工艺,即分子和大分子组分的自组装来开发取向层(也称为指令层)的努力。将介绍两个主题:(i)通过硅氧烷低聚物和酞菁染料在氧化铟锡表面逐步组装形成的可调指令层,以及(ii)由卟啉三聚体自组装形成的指令层。还将提及这些层在传感器设备中的潜在用途。

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