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首页> 外文期刊>The Journal of Chemical Physics >Texture formation under phase ordering and phase separation in polymer-liquid crystal mixtures
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Texture formation under phase ordering and phase separation in polymer-liquid crystal mixtures

机译:聚合物-液晶混合物中相序和相分离下的织构形成

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Computational modeling of texture formation in coupled phase separation-phase ordering processes in polymer/liquid crystal mixtures is performed using a unified model based on the nematic tensor order parameter and gradient orientation elasticity. The computational methods are able to resolve defect nucleation, defect-defect interactions, and defect-particle interactions, as well as global and local morphological features in the concentration and order parameter spatiotemporal behavior. Biphasic structures corresponding to polymer dispersed liquid crystals (PDLCs), crystalline filled nematic (CFNs), and random filled nematics (RFNs) are captured and analyzed using liquid crystal defect physics and structure factors. Under spinodal decomposition due to concentration fluctuations, the PDLC structure emerges, and the nucleation and repulsive interaction of defects within nematic droplets leads to bipolar nematic droplets. Under spinodal decomposition due to ordering fluctuations, the CFNs structure emerges, and the stable polymer droplet crystal is pinned by a lattice of topological defects. For intermediate cases, where the mixture is unstable to both concentration and nematic order fluctuations, the RFN structure emerges, and polymer droplets and fibrils are pinned by a defect network, whose density increases with the curvature of the polymer-liquid crystal interface. The simulations provide an information of the role of topological defects on phase separation-phase ordering processes in polymer-liquid crystal mixtures. (C) 2004 American Institute of Physics.
机译:基于向列张量有序参数和梯度取向弹性,使用统一模型对聚合物/液晶混合物中的相分离相有序耦合过程中的纹理形成进行计算建模。该计算方法能够解决缺陷成核,缺陷-缺陷相互作用和缺陷-颗粒相互作用以及浓度和阶数参数时空行为中的全局和局部形态特征。使用液晶缺陷物理学和结构因素,捕获并分析了与聚合物分散液晶(PDLC),晶体填充向列相(CFN)和随机填充向列相(RFN)相对应的双相结构。在由于浓度波动引起的旋节线分解下,PDLC结构出现,向列液滴内缺陷的形核和排斥相互作用导致双极向列液滴。在由于有序波动而发生的旋节线分解下,出现了CFNs结构,并且稳定的聚合物液滴晶体被拓扑缺陷的晶格固定。在中间情况下,混合物对浓度和向列数波动均不稳定,RFN结构出现,聚合物液滴和原纤维被缺陷网络固定,缺陷网络的密度随聚合物-液晶界面曲率的增加而增加。模拟提供了拓扑缺陷在聚合物-液晶混合物中的相分离-相序过程中的作用的信息。 (C)2004年美国物理研究所。

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