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新型高HTP值液晶用手性添加剂的合成及性质测定 被引量:1

Synthesis and application of high HTP values chiral additives in LCD
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摘要 以环戊基环己酮和手性联萘二酚为基础原料经过还原、取代等一系列反应制备了一种新型高HTP值液晶用手性添加剂。其具有较大的HTP值以及良好的光稳定性和化学稳定性。此外,还具备TFT液晶显示用手性添加剂的一些其他要求,如较高的电压保持率,与主体液晶材料良好的相溶性,不易被吸附剂(硅胶或氧化铝)所吸附,螺距P有小的温度相依性等。特别是其HTP值达到了101μm-1,与其他手性剂相比,用量会更少,可以大大降低其对混晶品质的影响,并且其合成方法简单,中间体及终产物易于纯化,使其在高端TFT混晶中的应用成为可能。 High HTP values chiral additives in LCD was synthesized based on 4-cyelopentylcyclohexa- none and chiral of 1,1'-Binaphthyl-2,2Cdiol by reduction reaction, substitution reaction, and a series of reactions. It has large HTP values, good light stability and chemical stability. In addition, it also has other requirements of TFT-LCD chira[ additive, such as higher voltage holding ratio, good com- patibility with the main liquid crystal material, uneasiness to be absorbed by adsorbent (silica gel or alumina), limited temperature dependence of the pitch, etc. Especially its HTP value reaches 101 t^m-1. When compared with other chiral agents, less dosage will be needed in making LCD de- vices, which can greatly reduce the negative influences of the additives on the quality of mixed crystal. The synthesis method is simple, the purifications of the intermediates and the final product are easy. These advantages make it possible for the high HTP chiral additives to be applied in the high-end TFT mixed crystals.
出处 《液晶与显示》 CAS CSCD 北大核心 2014年第2期189-194,共6页 Chinese Journal of Liquid Crystals and Displays
基金 2013年河北省科技计划项目(No.13211202D)
关键词 环戊基环己酮 联萘二酚 液晶手性添加剂 HTP值 4-cyclopentylcyclohexanone 1, l'-Binaphthyl-2,2"-diol chiral additives HTP value
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  • 1黄子强,杨文君,王继岷.纳米粒网络对于手性液晶反射光谱的展宽效应[J].液晶与显示,2006,21(1):1-5. 被引量:9
  • 2王庆军,刘福胜,于世涛.对甲氧基苯甲醛的制备与应用研究[J].精细石油化工进展,2006,7(5):34-38. 被引量:12
  • 3沈永涛,要旸,产启林,冯喜增.新型二元胆甾相液晶的超分子自组装比较研究[J].液晶与显示,2006,21(6):599-603. 被引量:5
  • 4KELLY S M.The Effect of the Positionand Configuration of Carbon-carbon Double Bonds on the Mesomorphism of Thermotropic Nonamphiphilic Liquid Crystals[J].Liq Cryst,1996(20):493-515.
  • 5EIDENSCHINK R,KRAUSE J,POH L.Cyclohexanderivate[P/OL].DE:2636684,1980-06-19[2010-01-05].http://v3.espacenet.com/searchResults?NUM=DE2636684&DB=EPODOC&submitted=true&locale=en_EP&ST=number&compact=false.
  • 6KELLY S M,SCHADT M,SEIBERLE H.Polar Nematic Trans-4-substituted-cyclohexyl(E)-alk-2-enoates[J].Liq Cryst,1995(18):581-594.
  • 7RUDOLF Eidenschink,JOACHIM Krause,LUDWIG Pohl.Liquid Crystalline Cyclohexane Derivatives[P/OL].US:4130502,1978-12-19[2010-01-05].http://v3.espacenet.com/searchResults?NUM=US4130502&DB=EPODOC&submitted=true&locale=en_EP&ST=number&compact=false.
  • 8夏治国,华瑞茂,梁晓.一种环己烷多氟苯类液晶单体的催化加氢方法[P/OL].CN:200910074772.9,2009-06-17[2010-01-05].http://search.sipo.gov.cn/sipo/zljs/hyjs-jieguo.jsp.
  • 9Finkenzeller U, Plach H J. Performance of chiral dopants in nematic mixtures [J]. Mol. Cryst. Liq. Cryst. Lett. , 1988, 6(3) :87-93.
  • 10Lee H J, Jin Z X, Aleshin A N , et al. Dispersion and current-voltage characteristics of helical polyacetylene single fibers[J]. J. Am. Chem. Soc., 2004,126(51):16722-16723.

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