A Bidimensional Gay-Berne Calamitic Fluid: Structure and Phase Behavior in Bulk and Strongly Confined Systems

Author:

Calderón-Alcaraz A.,Munguía-Valadez J.,Hernández S. I.,Ramírez-Hernández A.,Sambriski E. J.,Moreno-Razo J. A.

Abstract

A bidimensional (2D) thermotropic liquid crystal (LC) is investigated with Molecular Dynamics (MD) simulations. The Gay-Berne mesogen with parameterization GB(3, 5, 2, 1) is used to model a calamitic system. Spatial orientation of the LC samples is probed with the nematic order parameter: a sharp isotropic-smectic (I-Sm) transition is observed at lower pressures. At higher pressures, the I-Sm transition involves an intermediate nematic phase. Topology of the orthobaric phase diagram for the 2D case differs from the 3D case in two important respects: 1) the nematic region appears at lower temperatures and slightly lower densities, and 2) the critical point occurs at lower temperature and slightly higher density. The 2D calamitic model is used to probe the structural behavior of LC samples under strong confinement when either planar or homeotropic anchoring prevails. Samples subjected to circular, square, and triangular boundaries are gradually cooled to study how orientational order emerges. Depending on anchoring mode and confining geometry, characteristic topological defects emerge. Textures in these systems are similar to those observed in experiments and simulations of lyotropic LCs.

Funder

Universidad Nacional AutóNoma de MéXico

Publisher

Frontiers Media SA

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics,Materials Science (miscellaneous),Biophysics

Reference180 articles.

1. Springer Handbook of Electronic and Photonic Materials;Fedotov,2017

2. Metamaterials: a new frontier of science and technology;Liu;Chem Soc Rev,2011

3. The art of building small;Whitesides;Sci Am,2001

4. Building from the bottom up;Zhang;Mater Today,2003

5. Bottom-up strategy of materials fabrication: a new trend in nanotechnology of soft materials;Shimomura;Curr Opin Colloid Interface Sci,2001

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