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Improvement of Image Sticking in Liquid Crystal Display Doped with γ-Fe2O3 Nanoparticles

机译:掺杂γ-Fe2O3纳米颗粒的液晶显示器中图像残留的改善

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摘要

Image sticking in thin film transistor-liquid crystal displays (TFT-LCD) is related to the dielectric property of liquid crystal (LC) material. Low threshold value TFT LC materials have a weak stability and the free ions in them will be increased because of their own decomposition. In this study, the property of TFT LC material MAT-09-1284 doped with γ-Fe2O3 nanoparticles was investigated. The capacitances of parallel-aligned nematic LC cells and vertically aligned nematic LC cells with different doping concentrations were measured at different temperatures and frequencies. The dielectric constants perpendicular and parallel to long axis of the LC molecules ε⊥ and ε//, as well as the dielectric anisotropy Δε, were obtained. The dynamic responses and the direct current threshold voltages in parallel-aligned nematic LC cells for different doping concentrations were also measured. Although the dielectric anisotropy Δε decreased gradually with increasing temperature and frequency at the certain frequency and temperature in LC state for each concentration, the doping concentration of γ-Fe2O3 nanoparticles less than or equal to 0.145 wt % should be selected for maintaining dynamic response and decreasing free ions. This study has some guiding significance for improving the image sticking in TFT-LCD.
机译:薄膜晶体管液晶显示器(TFT-LCD)中残留的图像与液晶(LC)材料的介电性能有关。低阈值TFT LC材料具有较弱的稳定性,并且由于其自身的分解,其中的自由离子将增加。本研究研究了掺有γ-Fe2O3纳米粒子的TFT LC材料MAT-09-1284的性能。在不同的温度和频率下测量了具有不同掺杂浓度的平行排列的向列型液晶盒和垂直排列的向列型液晶盒的电容。获得了垂直和平行于LC分子ε⊥和ε//的长轴的介电常数,以及介电各向异性Δε。还测量了不同掺杂浓度下平行排列的向列型液晶盒的动态响应和直流阈值电压。尽管对于每种浓度,介电常数各向异性Δε随温度和频率的增加在一定频率和LC状态下随温度的升高而逐渐降低,但应选择小于或等于0.145 wt%的γ-Fe2O3纳米粒子掺杂浓度,以保持动态响应并降低自由离子。这项研究对于改善TFT-LCD的图像残留具有指导意义。

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