首页> 外文会议>Symposium on Liquid Crystal Materials and Devices, held April 5-7, 1999, San Francisco, California, U.S.A. >Formation of polymer stabilized ferroelectric liquid crystals using a fluorinated diacrylate
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Formation of polymer stabilized ferroelectric liquid crystals using a fluorinated diacrylate

机译:使用氟化二丙烯酸酯形成聚合物稳定的铁电液晶

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Ferroelectric liquid crystals (FLCs) have shown great potential for use in electro-optic and display technology due to their inherently fast switching speeds and bistability. Recently, considerable research has been devoted to FLCs mechanically stabilized by a polymer network. The network is formed typically by in situ polymerization of a monomer dissolved in the FLC. Because of the inherent order in the FLC, the polymerization behavior may be significantly different than what might be expected in solution polymerizations. These deviations result largely from the segregation properties of the monomer in the liquid crystal. One class of monomers, namely fluorinated acrylates, is a likely candidate for inducing novel segregation, polymerization and electro-optic behavior in polymer stabilized ferroelectric liquid crystals (PSFLCs). The use of fluorinated moieties has a significant impact on the phase and polymerization behavior of liquid crystal systems. This study focuses on the polymerization of a fluorinated diacrylate, octafluoro 1,6-hexanediol diacrylate (FHDDA), to form PSFLCs and the consequent impact of the polynmerization on the ultimate performance. Interestingly, as the temperature is increased and the order of the system decreases, a dramatic increase in the polymerization rate is observed. This increase is especially prominent for polymerizations in the smectic C~* phase for which the rate is more than five times that exhibited at much higher temepratures in the isotropic phase. As with other monomer/FLC systems, the segregation of the monomer plays a role in this polymerization behavior as the monomer segregates between the smectic layers of the liquid crystal. THe segregation properties also significantly impact the ultimate electro-optic properties. Both ferroelectric polarization and response time of the PSFLC change markedly with different polymerization temperatures, and approach values very close to those of the neat FLC under appropriate polymerization conditions. THis behavior not only provides a unique mechanism for rate acceleration in PSFLCs, but also paves the way for new methods to optimize performance in these materials.
机译:铁电液晶(FLC)由于其固有的快速切换速度和双稳态性,已显示出在电光和显示技术中使用的巨大潜力。最近,大量研究致力于通过聚合物网络机械稳定的FLC。通常通过溶解在FLC中的单体的原位聚合来形成网络。由于FLC的固有顺序,聚合行为可能与溶液聚合中预期的行为大不相同。这些偏差主要是由于单体在液晶中的偏析特性引起的。一类单体,即氟化丙烯酸酯,很可能在聚合物稳定的铁电液晶(PSFLC)中引发新的偏析,聚合和电光行为。氟化部分的使用对液晶系统的相和聚合行为具有重大影响。这项研究的重点是氟化二丙烯酸酯,八氟1,6-己二醇二丙烯酸酯(FHDDA)的聚合反应,形成PSFLC,以及聚合反应对最终性能的影响。有趣的是,随着温度的升高和体系级数的降低,聚合速率会急剧增加。对于近晶C- *相中的聚合,该增加尤其显着,其速率是在各向同性相中以高得多的温度表现出的速率的五倍以上。与其他单体/ FLC系统一样,单体的偏析在聚合行为中也起着作用,因为单体偏析在液晶的近晶层之间。偏析特性也显着影响最终的电光特性。 PSFLC的铁电极化和响应时间随聚合温度的不同而发生明显变化,并且在适当的聚合条件下,其值非常接近纯净FLC的值。这种行为不仅为PSFLC提供了一种独特的速率加速机制,而且还为优化这些材料性能的新方法铺平了道路。

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