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首页> 外文期刊>Journal of the Chinese Institute of Engineers >Improvement of fast responsive LC materials by bent-core dopants in optical compensated bend mode liquid crystal displays
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Improvement of fast responsive LC materials by bent-core dopants in optical compensated bend mode liquid crystal displays

机译:光学补偿弯曲模式液晶显示器中弯曲芯掺杂剂对快速响应液晶材料的改进

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Stabilization of bend configuration in optical compensated bend (OCB) mode cells by doping bent-core molecules was developed in this study. The values of response time (t) and threshold voltage (V _(th)) in OCB cells were dependent not only on the concentration but also on the shape, dipole direction, and flexible chain length of the doping molecules. Experimental results showed that the total response time (t _(total)) and threshold voltage (V _(th)) of OCB cells could be reduced by doping bent-core molecules, and smaller t values produced by reducing flexible chain lengths. In addition, attaining smaller V _(th) values could be achieved by reducing polarization of bent-core molecules. In general, higher concentrations of dopants normally induced shorter field-on response time (t _(on)) and a minimum field-off response time (t _(off)) occurred at 0.5% of doping concentration, where the fastest total response time (t _(total)) values were achieved.
机译:在这项研究中,通过掺杂弯曲核分子来稳定光学补偿弯曲(OCB)模式电池中的弯曲结构。 OCB单元中的响应时间(t)和阈值电压(V _(th))的值不仅取决于浓度,还取决于掺杂分子的形状,偶极子方向和柔性链长。实验结果表明,通过掺杂弯曲核分子可以减少OCB电池的总响应时间(t _(total))和阈值电压(V _(th)),而通过减小柔性链长度可以产生更小的t值。另外,可以通过减小弯曲核分子的极化来获得较小的V_(th)值。通常,较高浓度的掺杂物通常会导致较短的场接通响应时间(t _(on))和最小的场断开响应时间(t _(off))出现在掺杂浓度的0.5%处,其中总响应最快时间(t _(总计))值已达到。

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