Raman Research Institute, C.V. Raman Avenue, Sadashivanagar, Bangalore-560 080, India.
Chem Soc Rev. 2010 Jan;39(1):264-85. doi: 10.1039/b901792p. Epub 2009 Sep 23.
The nematic phase of discotic liquid crystals, although rarely observed, has made very significant progress over the past three decades since their discovery. It has made its way from a mere scientific curiosity to application in commodities. The negative birefringence films formed by polymerized nematic discotic liquid crystals have been commercialized as compensation films to enlarge the viewing angle and enhance the contrast ratio of commonly used twisted nematic liquid-crystal displays. High strength and high performance carbon fibers for industrial applications have been obtained from the carbonaceous mesophase and a liquid-crystal display device with wide and symmetrical viewing angle has been demonstrated by using discotic nematic liquid crystals. Discotic films with patterned colours have been obtained from cholesteric lyo-mesophases of discotic liquid crystals. Various molecular architectures have been designed and synthesized to exhibit the discotic nematic phase over a wide range of temperature. This critical review focuses on the synthesis and physical properties of these fascinating materials. It deals with the structure of various nematic phases, different discotic cores exhibiting the nematic phase, novel designing and transition temperature engineering principles, alignment and physical properties, and finally the application of discotic nematic LCs as the active switching component and as optical compensation films for widening the viewing angle and contrast ratio of liquid-crystal display devices (98 references).
盘状液晶的向列相虽然很少见,但自发现以来的过去三十年中取得了非常显著的进展。它已经从纯粹的科学好奇心发展到了商品应用。聚合向列型盘状液晶形成的负双折射膜已商业化,用作补偿膜以扩大视角并提高常用扭曲向列液晶显示器的对比度。通过中间相碳质相获得了用于工业应用的高强度和高性能碳纤维,并且通过使用盘状向列液晶显示器件展示了具有宽而对称视角的液晶显示器件。通过胆甾相液晶的各向同性中间相获得了具有图案化颜色的盘状膜。已经设计和合成了各种分子结构,以在很宽的温度范围内表现出盘状向列相。这篇评论文章重点介绍了这些迷人材料的合成和物理性质。它涉及各种向列相的结构、表现出向列相的不同盘状核、新型设计和转变温度工程原理、取向和物理性质,最后是盘状向列液晶作为主动开关元件的应用以及作为光学补偿膜,以扩大视角和提高液晶显示器件的对比度(98 篇参考文献)。