Liu Danqing, Broer Dirk J
Laboratory of Functional Organic Materials & Devices (SFD), Department of Chemical Engineering & Chemistry, Eindhoven University of Technology , Den Dolech 2, 5612 AZ Eindhoven, The Netherlands.
Langmuir. 2014 Nov 18;30(45):13499-509. doi: 10.1021/la500454d. Epub 2014 Apr 22.
Monolithically ordered liquid crystal polymer networks are formed by the photoinitiated polymerization of multifunctional liquid crystal monomers. This paper describes the relevant principles and methods, the basic structure-property relationships in terms of mesogenic properties of the monomers, and the mechanical and optical properties of the polymers. Strategies are discussed to control the molecular orientation by various means and in all three dimensions. The versatility of the process is demonstrated by two examples of films with a patterned molecular order. It is shown that patterned retarders can be made by a two-step polymerization process which is successfully employed in a transflective display principle. A transflective display is a liquid crystal display that operates in both a reflective mode using ambient light and a transmissive mode with light coming from a backlight system. Furthermore, a method is discussed to create a patterned film in a single polymerization process. This film has alternating planar chiral nematic areas next to perpendicularly oriented (so-called homeotropic) areas. When applied as a coating to a substrate, the film changes its surface texture. During exposure to UV light, it switches from a flat to a corrugated state.
整体有序的液晶聚合物网络是通过多官能液晶单体的光引发聚合形成的。本文描述了相关原理和方法、基于单体介晶性质的基本结构-性能关系以及聚合物的机械和光学性能。讨论了通过各种手段在所有三个维度上控制分子取向的策略。通过两个具有图案化分子有序的薄膜示例展示了该过程的多功能性。结果表明,图案化延迟器可以通过两步聚合工艺制备,该工艺已成功应用于透反射显示原理。透反射显示器是一种液晶显示器,它既可以在使用环境光的反射模式下工作,也可以在使用来自背光系统的光的透射模式下工作。此外,还讨论了一种在单一聚合过程中制备图案化薄膜的方法。该薄膜具有交替的平面手性向列区域和垂直取向(所谓的垂直取向)区域。当作为涂层应用于基板时,该薄膜会改变其表面纹理。在紫外线照射下,它会从平坦状态转变为波纹状状态。