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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Molecular simulations of entangled defect structures around nanoparticles in nematic liquid crystals
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Molecular simulations of entangled defect structures around nanoparticles in nematic liquid crystals

机译:向列液晶纳米颗粒周围缠结缺陷结构的分子模拟

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We investigate the defect structures forming around two nanoparticles in a Gay-Berne nematic liquid crystal using molecular simulations. For small separations, disclinations entangle both particles forming the figure of eight, the figure of omega and the figure of theta. These defect structures are similar in shape and occur with a comparable frequency to micron-sized particles studied in experiments. The simulations reveal fast transitions from one defect structure to another suggesting that particles of nanometre size cannot be bound together effectively. We identify the 'three-ring' structure observed in previous molecular simulations as a superposition of the different entangled and non-entangled states over time and conclude that it is not itself a stable defect structure.
机译:我们使用分子模拟研究了在同性恋向列液晶中围绕两个纳米颗粒形成的缺陷结构。 对于小的分离,公开揭示了形成八个图的颗粒,ω和θ的图。 这些缺陷结构的形状类似,并且在实验中研究的微米尺寸粒子的相当频率相似。 模拟显示从一个缺陷结构到另一个缺陷结构的快速过渡,表明纳米尺寸的颗粒不能有效地结合在一起。 我们识别以前的分子模拟中观察到的“三环”结构,作为随着时间的推移不同纠缠和非纠缠态的叠加,并得出本身并不是一种稳定的缺陷结构。

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