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Dielectrophoretic manipulation of Nematic Isotropic Droplets

机译:向列和各向同性液滴的介电泳操作

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Dielectrophoresis can provide a delicate tool to control electrically neutral particles in colloid. The dielectrophoresis is usually applied to solid particles or heterogeneous liquid droplet in continuous liquid, but we devised and investigated the dielectrophoresis of isotropic droplets within nematic phase or vice versa. Using multi-components liquid crystal mixtures that exhibit relatively wide temperature range of nematic-isotropic coexistence, we achieved a field-induced phase separation between isotropic and nematic. We also fabricated the isotropic-nematic filaments that was achieved using a biased surface preference for either isotropic or nematic phase of the alignment layer. The dielectrophoresis manipulations of isotropic and nematic droplets required much lower voltage compared to that for the electro wetting type devices. In addition, we observed the bi-directional actuation of isotropic droplets using anisotropic dielectric property of liquid crystal, which is not possible in usual dielectrophoresis. The bidirectional actuation was achieved by controlling the LC director within the cell so as to change the sign of the difference between the effective dielectric constant of nematic and isotropic liquid crystals. We simulated the bi-directional dielectrophoresis by performing the LC director calculation and the corresponding dielectrophoresis. The simulation results matched well with the experimental data. Thus, the bi-directional dielectrophoresis using isotropic and nematic droplets may open new possibility of electro-optical applications using liquid crystals.
机译:介电电泳可以提供一种精细的工具来控制胶体中的电中性粒子。介电泳通常应用于连续液体中的固体颗粒或非均质液滴,但我们设计并研究了向列相内各向同性液滴的介电泳,反之亦然。使用显示相对广泛的向列-各向同性共存温度范围的多组分液晶混合物,我们实现了各向同性和向列之间的场致相分离。我们还制造了各向同性向列长丝,这是通过对取向层的各向同性或向列相使用偏向表面的偏爱来实现的。与电润湿型设备相比,各向同性和向列液滴的介电电泳操作所需的电压要低得多。另外,我们观察到利用液晶的各向异性介电特性对各向同性液滴的双向驱动,这在通常的介电泳中是不可能的。双向驱动是通过控制液晶盒内的LC指向矢来实现的,以改变向列和各向同性液晶的有效介电常数之间的差的符号。我们通过执行LC指向矢计算和相应的介电电泳来模拟双向介电电泳。仿真结果与实验数据吻合良好。因此,使用各向同性和向列液滴的双向介电电泳可能会开创使用液晶进行电光应用的新可能性。

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