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首页> 外文期刊>The Journal of Chemical Physics >Spatio-temporal growth of nematic domains in liquid crystal polymer mixtures
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Spatio-temporal growth of nematic domains in liquid crystal polymer mixtures

机译:液晶聚合物混合物中向列域的时空增长

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摘要

Dynamics of phase separation and morphology development in mixtures of a low molar mass liquid crystal (LC) and a polymer have been investigated theoretically in comparison with experimental results. In the theoretical model, the combined free-energy densities of Flory-Huggins theory for isotropic mixing and Maier-Saupe theory for nematic ordering have been incorporated into the time-dependent Ginzburg-Landau equation (type C). The temporal evolution of the structure factor and the emergence of phase-separated liquid crystal domains have been simulated on the basis of an explicit central difference method based on a square lattice (128 * 128) with a periodic boundary condition. Of particular interest is the observed plateau (or inflection) region in the growth dynamic curve, which may be attributed to the breakdown of the interconnected domains caused by the nematic ordering. This unique behavior has been verified experimentally in terms of the growth of structure factor following several temperature quenches into a nematic + liquid region of the experimental phase diagram of an E7/poly(methyl methacrylate) mixture. Further, the emergence of LC domains in the metastable and unstable nematic-liquid spinodal regions has been investigated theoretically and compared with the reported experimental results.
机译:与实验结果相比,从理论上研究了低摩尔质量液晶(LC)和聚合物的混合物中相分离和形态发展的动力学。在理论模型中,将用于各向同性混合的Flory-Huggins理论和用于向列有序的Maier-Saupe理论的组合自由能密度合并到了随时间变化的Ginzburg-Landau方程中(类型C)。在基于具有周期性边界条件的正方形晶格(128 * 128)的显式中心差分方法的基础上,模拟了结构因子的时间演变和相分离液晶域的出现。特别令人感兴趣的是在生长动态曲线中观察到的平稳区(或拐点),这可能归因于向列有序导致的互连域的分解。这种独特的行为已经通过几次温度淬灭进入E7 /聚(甲基丙烯酸甲酯)混合物实验相图的向列+液体区域后,通过结构因子的增长进行了实验验证。此外,理论上已经研究了亚稳和不稳定向列液旋节线区域中LC域的出现,并与已报道的实验结果进行了比较。

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