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The fluctuation-driven dielectric properties of liquid crystalline 8OCB and its nanocolloids

J. Łoś, Aleksandra Drozd-Rzoska, Sylwester J. Rzoska, Szymon Starzonek, K. Czupryński

2022Soft Matter15 citationsDOI

Abstract

< 2.2. The evidence for critical like changes in a distribution of relaxation times is shown. For mesophases, a tiny addition of nanoparticles causes permanent orientation of LC molecules, leading even to a 16% increase of the dielectric constant above a maximal value in pure 8OCB. A split of two regions, dominated by pre-isotropic and pre-smectic fluctuations, is evidenced. Model explanations for detected phenomena, particularly in the isotropic liquid phase, are presented. New evidence for a premelting effect in the solid phase is also shown.

Topics & Concepts

DielectricLiquid crystalIsotropyRelaxation (psychology)ChemistryPhase (matter)Condensed matter physicsThermodynamicsScalingChemical physicsMaterials scienceOpticsOrganic chemistryPhysicsSocial psychologyPsychologyGeometryMathematicsOptoelectronicsLiquid Crystal Research AdvancementsMaterial Dynamics and PropertiesSurfactants and Colloidal Systems