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首页> 外文期刊>Journal of Molecular Liquids >Aggregation of colloidal particles in a non-equilibrium backflow induced by electrically-driven reorientation of the nematic liquid crystal
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Aggregation of colloidal particles in a non-equilibrium backflow induced by electrically-driven reorientation of the nematic liquid crystal

机译:由向列型液晶的电驱动取向引起的非平衡回流中胶体颗粒的聚集

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We study the dynamics of anisotropic aggregation of spherical colloidal particles with dipolar interactions, dispersed in a nematic liquid crystal. The director is perpendicular to the surface of spheres so that each particle creates a dipolar distortion when placed in a uniformly aligned planar nematic slab. A backflow of the nematic caused by periodic voltage pulses, propels the spheres in a bidirectional fashion, so that the dipoles of one polarity move in the direction antiparallel to the dipoles of opposite polarity. The dipoles experience inelastic collisions, head to tail and head to head. The head-to-tail collisions of similarly oriented dipoles result in linear aggregation parallel to the backflow, while the head-to-head collisions lead to aggregation in a transversal direction. The two flows are separated by an impact parameter that controls the frequency of head-to-head collisions and thus the resulting shape of aggregates, their anisotropy and fractal dimension. We discuss in detail the numerous forces of elastic, electrophoretic and dielectrophoretic nature, as well as gravity forces, acting on colloidal spheres suspended in an electrically driven slab of a nematic liquid crystal. The proposed "nematic collider" offers opportunities in the quantitative studies of non-equilibrium processes such as anisotropic aggregation and jamming, as well as in the development of systems capable of self-assembly through anisotropic interactions of the building units.
机译:我们研究了分散在向列型液晶中的具有偶极相互作用的球形胶体粒子的各向异性聚集动力学。指向矢垂直于球体的表面,因此当放置在均匀排列的平面向列平板中时,每个粒子都会产生偶极畸变。由周期性电压脉冲引起的向列的倒流以双向方式推动球体,从而一个极性的偶极子沿与相反极性的偶极子反平行的方向运动。偶极子经历了从头到尾和从头到头的非弹性碰撞。方向相似的偶极子的头对尾碰撞会导致平行于回流的线性聚集,而头对头碰撞会导致横向聚集。两种流由影响参数分开,该参数控制头对头碰撞的频率,从而控制聚集体的最终形状,各向异性和分形维数。我们详细讨论了许多弹性,电泳和介电泳性质的力,以及重力,这些力作用于悬浮在向列液晶电驱动平板中的胶体球上。提出的“向列对撞机”为非平衡过程的定量研究提供了机会,例如各向异性聚集和阻塞,以及通过建筑物单元的各向异性相互作用能够自我组装的系统的开发。

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