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Fast Switching of Frequency Modulation Twisted Nematic Liquid Crystal Display Fabricated by Doping Nanoparticles and Its Mechanism

机译:掺杂纳米粒子制备的调频扭曲向列液晶显示器的快速切换及其机理

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The electrooptic characteristics of a twisted nematic (TN) liquid crystal display (LCD) fabricated by doping Ag nanoparticles protected with NLC, 5CB (K-15, Merck) molecules have been investigated, and it is shown that the device exhibits a unique electrooptic response characteristic that is sensitive to the high-frequency components of the operating voltage together with the conventional root-mean-square voltage response. We call this device frequency modulation (FM) TN-LCD. The FM-TN-LCD is switched by switching the frequency of the operating voltage while its amplitude is kept unchanged. As an example, the frequency switched from 20 Hz to 500 Hz or 50 Hz to 2 kHz, and the switching is performed with the time constant of 21 ms for the rising process and 3 ms for the falling process. This device shows a peculiar response to a burst AC square wave, where the decay time is reduced by several times compared to that of an undoped TN-LCD. The mechanism of the FM-TN-LCD is investigated through the study of its dielectric properties.
机译:通过掺杂由NLC,5CB(K-15,Merck)分子保护的Ag纳米颗粒制备的扭曲向列(TN)液晶显示器(LCD)的电光特性已得到研究,表明该器件表现出独特的电光响应对工作电压的高频分量敏感的特性以及常规的均方根电压响应。我们将此设备称为调频(FM)TN-LCD。 FM-TN-LCD通过在不改变幅度的情况下切换工作电压的频率来进行切换。例如,频率从20 Hz切换到500 Hz,或者从50 Hz切换到2 kHz,切换的时间常数是上升过程为21 ms,下降过程为3 ms。该器件对突发的AC方波表现出特殊的响应,与未掺杂的TN-LCD相比,其衰减时间减少了数倍。通过对FM-TN-LCD介电性能的研究来研究其机理。

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