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光控取向弱锚定表面的液晶分子排列

Liquid Crystal Molecules Alignment on the Weak Anchoring Surface by LPP Method

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【作者】 梁兆颜宣丽杨柏梁黄锡珉张金宝

【Author】 LIANG Zhao-yan; XUAN Li; YANG Bat-liang; HUANG Xi-min (Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences; North Liquid Crystal Engineering Research and Development Center, Changchun 130021, China) ZHANG Jin-bao (Chang

【机构】 中国科学院长春光学精密机械与物理研究所北方液晶工程研究开发中心!吉林长春130021,中国科学院长春光学精密机械与物理研究所北方液晶工程研究开发中心!吉林长春130021,中国科学院长春光学

【摘要】 研究了光敏聚酰亚胺PI(BTDA-TMMDA)用于液晶取向时的弱锚定边界特性。实验测得了两基板皆为摩擦取向层扭曲向列液晶显示器件(DR-TN-LCD)及两基板皆为光控取向层的扭曲向列液晶显示器件(DLPP-TN-LCD)的电光特性和时间响应特性曲线。研究了液晶排列的稳定性,讨论了液晶分子在光控取向弱锚定表面上的排列机理。

【Abstract】 A new method is studied, which can align the liquid crystals by the linear polarized photo-polymerization (LPP) using ultraviolet (UV) light. The weak anchoring properties of the photosensitive polyimide PI(BTDA-TMMDA) are investigated, by which the liquid crystal molecules are aligned. The experiment results shows that the liquid crystals are uniformly aligned by the polyimide PI(BTDA-TMMDA) only through the exposure of the polarized UV light for 30 minutes. The electro-optical and response time characteristic curves of TN-LCDs made of the double-rubbed (DR) and double-linear polarized pho- topolymerization (DLPP) substrates are measured. It shows that the threshold voltage (Vth = 1.22V) and the saturated voltage (Vsat=1.69V)of DLPP-TN-LCD are lower than the DR-TN-LCD’s (Vth=1. 92V,Vsat=2. 65V) due to the weak anchoring on the surface. The response time TON (14ms) of the DLPP-TN-LCD is shorter than the DR-TNLCD’S (TON= 27. 5ms), and TOFF(82. 5ms) is longer than DR\TN-LCD’s (TOFF= 43. 5ms). The LC is aligned uniformly after treated 30min at 130℃. The mechanism of LC alignment on the weak anchoring surface is also discussed. IR spectral difference of polyimide surface before and after exposure of polarized UV light shows that the spread of the carboxyl (C= O) is different between the directions perpendicular and prarllel to the vector of the polarized UV light, so the anisotropy is produced on the PI surface. Thus, the liquid crystal molecules are aligned under the influence of the anisotropic PI surface.

【关键词】 液晶弱锚定光控取向
【Key words】 liquid crystalweak anchoringphoto-controlled alignment
【基金】 中国科学院“九五”重大项目!KY951-AI-502;吉林省科技发展计划项目!19990515
  • 【文献出处】 液晶与显示 ,CHINESE JOURNAL OF LIQUID CRYSTALS AND DISPLAYS , 编辑部邮箱 ,2000年01期
  • 【分类号】O753.2
  • 【被引频次】14
  • 【下载频次】233
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