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首页> 外文期刊>Electron Devices, IEEE Transactions on >Effects of Low Viscosity Liquid on the Electro-Optical Properties of Inverse Twisted Nematic Liquid Crystal Display
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Effects of Low Viscosity Liquid on the Electro-Optical Properties of Inverse Twisted Nematic Liquid Crystal Display

机译:低粘度液体对反向扭曲向列液晶显示器电光性能的影响

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摘要

The optimized electrooptical (EO) properties of inverse twisted nematic (ITN) liquid crystals (LCs) were demonstrated by utilizing liquid doping technique. ITN LC display is a driving system containing 90° twisted structure on homeotropic polyimide with negative dielectric anisotropic LCs. Toluene was chosen as dopant and the doped ITN LCs show improved driving voltage and response time while maintaining a very good dark state as undoped ITN LCs. Driving voltage was 1.1 V lower and the total response time was reduced by 49% after toluene doped into LCs. The main reason of these EO properties enhancement is that toluene molecules penetrate between LC molecules, and hence, the dielectric anisotropy and the visco-elastic coefficient of LCs are changed. The simplicity of liquid doping technique shows that it could be applied to a wide range of LC systems.
机译:通过利用液体掺杂技术,证明了逆向列向列液晶(ITN)的最佳电光(EO)性能。 ITN LC显示器是一种驱动系统,该系统在具有负介电各向异性LC的垂直聚酰亚胺上包含90°扭曲的结构。选择甲苯作为掺杂剂,掺杂的ITN LC表现出改善的驱动电压和响应时间,同时保持了与未掺杂的ITN LC一样好的暗态。将甲苯掺杂到LC中后,驱动电压降低了1.1 V,总响应时间减少了49%。这些EO性能增强的主要原因是甲苯分子渗透到LC分子之间,因此改变了LC的介电各向异性和粘弹性系数。液体掺杂技术的简单性表明它可以应用于各种LC系统。

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