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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Electrooptical Properties of Carbon-Nanotube-Doped Twisted Nematic Liquid Crystal Cell
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Electrooptical Properties of Carbon-Nanotube-Doped Twisted Nematic Liquid Crystal Cell

机译:碳纳米管掺杂扭曲向列液晶盒的电光特性

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摘要

We investigated the electrooptical properties of a carbon nanotube (CNT)-doped twisted nematic (TN) liquid crystal (LC) cell. Experimental results reveal that the doped CNTs influence the elastic constant of LC-CNT dispersion. Using a small amount of CNT dopant, the field-on response time of the LC cell is nearly invariant; the threshold voltage of the cell increases due to the increase in the elastic constant of LC-CNT dispersion. At a higher CNT concentration, the marked increase in the dielectric anisotropy of LC-CNT dispersion markedly decreases the field-on response time and threshold voltage of the LC cell. The field-off response time of this cell decreases with increasing CNT concentration due to the increase in elastic constant and the slight increase in viscosity of LC-CNT dispersion. The field-on and field-off response times of the LC cell are reduced simultaneously when the LC host is doped with a moderate amount of CNT dopant.
机译:我们研究了掺杂碳纳米管(CNT)的扭曲向列(TN)液晶(LC)电池的电光性能。实验结果表明,掺杂的CNTs影响LC-CNT分散体的弹性常数。使用少量的CNT掺杂剂,LC单元的场接通响应时间几乎不变。由于LC-CNT分散体的弹性常数的增加,单元的阈值电压增加。在较高的CNT浓度下,LC-CNT分散体的介电各向异性显着增加,显着降低了LC单元的场响应时间和阈值电压。由于弹性常数的增加和LC-CNT分散液粘度的轻微增加,该单元的场外响应时间随CNT浓度的增加而减少。当LC主体中掺有适量的CNT掺杂剂时,LC单元的场接通和场关响应时间会同时减少。

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