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1)  liquid crystalline matrix
液晶基质
1.
This article offers a review about research progress of resin matrix through methyl methacrylate resin matrix system, epoxy resin matrix system, liquid crystalline matrix system and other kinds of neotype main monomer system.
本文从甲基丙烯酸酯基质系统,环氧树脂基质系统,液晶基质系统及其他各种新型主单体系统对树脂基质的研究进展做一综述。
2)  liquid crystal unit
液晶基元
1.
In the first,the surfactantal liquid crystal unit composed by azo-benzene and dodecyl was synthesized.
首先合成由偶氮苯和十二烷基构建的具有表面活性的液晶基元,借助磺酸基和金属离子的垂直整理作用以及芳香基团π-π堆积协同作用在环己烷溶剂中构成稳定的纳米柱胶束,通过元素分析、红外光谱分析、紫外可见光谱分析等手段对化合物的结构和物理化学性质进行了表征,通过TEM观测到形态规则均匀,直径在20nm~40nm左右的纳米柱。
2.
Pyridine-4-carboxylic acid reacted with dodecyl bromide to give liquid crystal unit dodecyl pyrdine-4-carboxylate which was further treated with palladium(Ⅱ) ion in mole ratio 4∶1 to form the coordination compound at room temperature in the mixed reaction system of water and ethanol.
以水杨醛和邻氨基苯酚为原料来制备希夫碱,以异烟酸和溴代十二烷为原料合成液晶基元异烟酸十二烷基酯,在水和乙醇混合反应体系中与Pd(Ⅱ)过渡金属通过自组装形成配合物。
3.
Pyridine-4-carboxylic acid reacted with dodecyl bromide to give liquid crystal unit dodecyl pyridine-4-carboxylate which was further treated with palladium(Ⅱ) ion,copper(Ⅱ) ion or nickel(Ⅱ) ion in mole ratio 4∶1 to form the coordination compound at room temperature in the mixed reaction system of water and ethanol.
以异烟酸和溴代十二烷为原料合成液晶基元异烟酸十二烷基酯,在水和无水乙醇混合反应体系中,室温下分别与Pd(Ⅱ)、Cu(Ⅱ)和Ni(Ⅱ)过渡金属按4∶1的摩尔比混合反应,通过自组装形成配合物。
3)  mesogenic unit
液晶基元
4)  LCOS
硅基液晶
1.
Assembly Process of LCOS-Cell
硅基液晶显示器液晶盒贴合工艺研究
2.
Here is introduced a design of liquid crystal on silicon(LCOS) driver for the digital photofinishing system.
针对基于硅基液晶(LCOS)的数码冲印系统,设计了一种LCOS的驱动电路。
3.
Based on the low power consumption, long lifespan and high irradiance efficiency of ultra high-bright LED, an application of Liquid Crystal on Silicon (LCoS) light source is proposed.
超高亮度发光二极管(LED)具有功耗低、寿命长、发光效率高等优点,为了将其应用于硅基液晶(LCoS)微显示器光源,从LED优点出发,结合LED的恒流发光特性,设计出了超高亮度LED驱动电路,并通过实验进行分析和优化。
5)  liquid crystal on silicon
硅基液晶
1.
To offer the true to nature target-background images used in the simulation system for homing weapons,a visual-light optical target simulator based on the liquid crystal on silicon(LCOS) technology is established.
为了产生制导武器仿真系统中所需的逼真的目标背景图像,建立了基于硅基液晶显示技术的可见光光学目标模拟器。
2.
The image source is the hard core of HMD, the R&D of LCoS(Liquid Crystal on Silicon) and OLED(Organic Light Emitting Diode) microdisplays needs to conquer many difficulties which related with material, fabrication, electronic circuit, optics and so on, these means a high technology barrier.
HMD的像源器件(即微型显示芯片)是整个HMD系统中最重要的组分,现阶段的主流像源“硅基液晶”(Liquid Crystal on Silicon, LCoS)与“有机发光”(Organic Light Emitting Diode, OLED)微显芯片在研发中需克服材料、工艺、电路、光学等诸多方面的困难,有较高的技术门槛,其驱动及控制技术的研究是整个HMD系统中不可或缺的一环,对HMD的性能、功能及使用方式等具有决定性作用,这同时也是开发具有自主知识产权样机的必备基础。
6)  mesogenic group
液晶基团
补充资料:热致液晶聚合物向列液晶态


热致液晶聚合物向列液晶态


执戮液晶饭合物向列攻晶态 成郎有f几硅研究听供稿
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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