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Theory of Liquid-crystalline Ordering in Polymer Brushes
Authors:Anna A. Mercurieva  Tatiana M. Birshtein  Victor M. Amoskov
Affiliation:Institute of Macromolecular Compounds of Russian Academy of Sciences, Bolshoi pr. 31, St. Petersburg 199004, Russia
Abstract:Summary: We present a review of the works devoted to investigation of LC ordering in polymer brushes. This series has been carried out by the group of T. M. Birshtein and covers the following aspects of the problem: thermotropic LC phase transition in LCP brushes, microphase segregation, homeotropic and planar LC phases, LC polymer in LC solvent, lyotropic LCP brushes, LC transitions under normal or lateral force (shear flow). Analytical theory is developed for simplified model of polymer brush with accounting for thermotropic attraction in Mayer-Saupe approximation and lyotropic repulsion in DiMarzio formalism; numerical calculations are fulfilled in self-consistent field approximation (method of Scheutjens and Fleer). Brownian dynamics simulations are applied for modeling polymer brush in a shear flow.
Keywords:liquid-crystalline polymers (LCP)  modeling  monolayers  phase diagrams  phase separation  self-organization  shear  simulations  theory
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