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Structural properties and ring defect formation in discotic liquid crystal nanodroplets.

Daniel Ignacio Salgado-BlancoAndrea H Llanas-GarcíaEnrique Díaz-HerreraJosé Adrián Martínez-GonzálezCarlos I Mendoza
Published in: Journal of physics. Condensed matter : an Institute of Physics journal (2022)
In this work, we performed NpT Monte Carlo simulations of a Gay-Berne discotic liquid crystal confined in a spherical droplet under face-on anchoring and fixed pressure. We find that, in contrast to the unbounded system, a plot of the order parameter as function of temperature does not show a clear evidence of a first-order isotropic-nematic transition. We also find that the impossibility of simultaneously satisfy the uniform director field requirement of a nematic phase with the radial boundary conditions, results in the appearance of a ring disclination line as a stress release mechanism in the interior of the droplet. Under further cooling, a columnar phase appears at the center of the droplet.
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