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Dichroic Dye induced Nonlinearity in Polymer Dispersed Liquid Crystal Materials for Display Devices

机译:二向色染料诱导用于显示装置的聚合物分散液晶材料的非线性

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The electro-optical characteristics of dye-doped polymer dispersed liquid crystals (PDLCs) have been investigated for display applications. The PDLC samples were obtained by polymerization induced phase separation of the nematic liquid crystal (LC)-dye-prepolymer mixtures under UV illumination with a constant intensity. The optimum conditions for the scattering characteristics of the dye-doped PDLC films as function of the dye concentration have been examined. It was seen that the phase separation and segregation of LC droplets is dependent on the amount of dye used. LC droplets in dye-doped PDLC films exhibit various configurations at lower and higher applied electric field when observed in situ under polarizing optical microscope. The effects of morphology on the electro-optical properties were examined. Experimental results indicate that the driving voltage and contrast ratio were affected considerably by the amount of dye. UV-VIS spectroscopy results showed that the molecular orientation of dye in LC droplets can be controlled to induce nonlinearity in these materials. The results showed that the dye concentration can be optimized to obtain promising electronic materials with minimum threshold and high contrast for display applications.
机译:已经研究了用于显示应用的染料掺杂聚合物分散液晶(PDLC)的电光特性。通过聚合诱导的向量液晶(LC)-dye-prepolymer混合物在具有恒定强度的UV照射下的聚合诱导的相分离获得PDLC样品。已经研究了作为染料浓度的函数的染料掺杂PDLC膜的散射特性的最佳条件。可以看出,LC液滴的相分离和偏析取决于所用染料的量。染料掺杂PDLC膜中的LC液滴在偏振光学显微镜下观察到在原位观察时在较低施加的电场下表现出各种配置。检查了形态对电光特性的影响。实验结果表明,随着染料的量,驱动电压和对比度大幅影响。 UV-Vis光谱结果表明,可以控制LC液滴中染料的分子取向,以诱导这些材料中的非线性。结果表明,可以优化染料浓度,以获得具有最小阈值和高对比度的有前途的电子材料,可用于显示应用。

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