Thermodynamics, transition dynamics, and texturing in polymer-dispersed liquid crystals with mesogens exhibiting a direct isotropic/smectic-A transition
Ezequiel R. Soule, Nasser Mohieddin Abukhdeir, Alejandro D. Rey

TL;DR
This study investigates the thermodynamics, phase transition dynamics, and texturing in polymer-dispersed liquid crystals with a direct isotropic to smectic-A transition, combining experiments and modeling to understand morphology evolution.
Contribution
It introduces experimental phase diagrams and computational models for novel PDLC systems with direct isotropic/smectic-A transitions, revealing morphology stages and nano-structures.
Findings
Good agreement between experimental and theoretical phase diagrams.
Identification of three distinct growth morphology stages.
Observation of persistent anisotropic morphologies during phase transition.
Abstract
Experimental and modeling/simulation studies of phase equilibrium and growth morphologies of novel polymer-dispersed liquid crystal (PDLC) mixtures of PS (polystyrene) and liquid crystals that exhibit a direct isotropic/smectic-A (lamellar) mesophase transition were performed for PS/10CB (decyl- cyanobiphenyl) and PS/12CB (dodecyl-cyanobiphenyl). Partial phase diagrams were determined using polarized optical microscopy (POM) and differential scanning calorimetry (DSC) for different compositions of both materials, determining both phase separation (liquid/liquid demixing) and phase ordering (isotropic/smectic-A transition) temperatures. The Flory-Huggins theory of isotropic mixing and Maier-Saupe-McMillan theory for smectic-A liquid crystalline ordering were used to computationally determine phase diagrams for both systems, showing good agreement with the experimental results. In…
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