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Analysis of Optical Performance Degradation in an Ion-Doped Liquid-Crystal Cell with Electrical Circuit Modeling

机译:电路型电路型液晶单元中光学性能劣化分析

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摘要

We reported electrical circuit modeling to analyze the optical performance degradation in an ion-doped liquid-crystal (LC) cell, which exhibited advantages, such as excellent optical performance and simple switching process, but suffered from long-term reliability issues. When an electric field was applied to the cell for an extended period of time, the optical performance became nonuniform, and the haze in the opaque state decreased. By measuring the impedance and fitting the measured data by using an equivalent circuit model, we confirmed the changes of the parameters in the electrochemical impedance spectroscopy and electrophysical properties of the ion-doped LC cell with time. According to the measurement of the optical and physical characteristics, the optical performance degradation was caused mainly by the ionic materials.
机译:我们报道了电路建模,以分析离子掺杂液晶(LC)电池中的光学性能劣化,这表现出优异的光学性能和简单的开关过程,但遭受了长期可靠性问题。当电场向电池施加到电池延长的时间内时,光学性能变得不均匀,并且不透明状态下的雾度降低。通过使用等效电路模型测量阻抗并拟合测量的数据,我们确认了电化学阻抗光谱和离子掺杂LC细胞的电神法性质的变化随时间的时间。根据光学和物理特性的测量,光学性能劣化主要由离子材料引起。

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