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首页> 外文期刊>The Journal of Chemical Physics >Liquid-crystal mediated nanoparticle interactions and gel formation
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Liquid-crystal mediated nanoparticle interactions and gel formation

机译:液晶介导的纳米粒子相互作用和凝胶形成

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摘要

Colloidal particles embedded within nematic liquid crystals exhibit strong anisotropic interactions arising from preferential orientation of nematogens near the particle surface. Such interactions are conducive to forming branched, gel-like aggregates. Anchoring effects also induce interactions between colloids dispersed in the isotropic liquid phase, through the interactions of the pre-nematic wetting layers. Here we utilize computer simulation using coarse-grained mesogens to perform a molecular-level calculation of the potential of mean force between two embedded nanoparticles as a function of anchoring for a set of solvent conditions straddling the isotropic-nematic transition. We observe that strong, nontrivial interactions can be induced between particles dispersed in mesogenic solvent, and explore how such interactions might be utilized to induce a gel state in the isotropic and nematic phases.
机译:包埋在向列型液晶中的胶体颗粒表现出强烈的各向异性相互作用,这是由线虫在颗粒表面附近的优先取向引起的。这样的相互作用有利于形成分支的凝胶状聚集体。通过前向列型润湿层的相互作用,锚定效应还引起分散在各向同性液相中的胶体之间的相互作用。在这里,我们利用使用粗粒度液晶元的计算机模拟对两个嵌入的纳米粒子之间的平均力的潜力进行分子水平的计算,这是锚定跨各向同性向列相移的一组溶剂条件的函数。我们观察到分散在介晶溶剂中的颗粒之间可以诱导强烈的,非平凡的相互作用,并探索如何利用这些相互作用在各向同性和向列相中诱导凝胶态。

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