Effect of orientational restriction on monolayers of hard ellipsoids
arXiv:1509.07810 · doi:10.1039/C5CP05702G
Abstract
The effect of out-of-plane orientational freedom on the orientational ordering properties of a monolayer of hard ellipsoids is studied using Parsons-Lee scaling approach and replica exchange Monte Carlo computer simulation. Prolate and oblate ellipsoids exhibit very different ordering properties, namely, the axes of revolution of prolate particles tend to lean out, while those of oblate ones prefer to lean into the confining plane. The driving mechanism of this is that the particles try to maximize the available free area on the confining surface, which can be achieved by minimizing the cross section areas of the particles with the plane. In the lack out-of-plane orientational freedom the monolayer of prolate particles is identical to a two-dimensional hard ellipse system, which undergoes an isotropic-nematic ordering transition with increasing density. With gradually switching on the out-of-plane orientational freedom the prolate particles lean out from the confining plane and a destabilisation of the in-plane isotropic-nematic phase transition is observed. The system of oblate particles behaves oppositely to that of prolates. It corresponds to a two-dimensional system of hard disks in the lack of out-of-plane freedom, while it behaves similar to that of hard ellipses in the freely rotating case.
10 pages, 8 figures
References in corpus (9)
- Assembling Ellipsoidal Particles at Fluid Interfaces using Switchable Dipolar Capillary Interactions
- Phase diagram of two-dimensional hard ellipses
- Liquid crystals in two dimensions: First-order phase transitions and nonuniversal critical behavior
- Orientational ordering in hard rectangles: The role of three-body correlations
- Interface deformations affect the orientation transition of magnetic ellipsoidal particles adsorbed at fluid-fluid interfaces
- Magnetic Nanorods Confined in a Lamellar Lyotropic Phase
- Lyotropic Lamellar Phase Doped with a Nematic Phase of Magnetic Nanorods
- Effect of shape biaxiality on the phase behavior of colloidal liquid-crystal monolayers
- Phase behavior of liquid-crystal monolayers of rod-like and plate-like particles
Cited by in corpus (5)
- Monolayers of hard rods on planar substrates: I. Equilibrium
- Monolayers of hard rods on planar substrates: II. Growth
- The study of uniaxial-biaxial phase transition of confined hard ellipsoids using density functional theory
- From n-layer planar ordering to the monolayer homeotropic structure of confined hard rods: The effect of shape anisotropy and wall-to-wall separation
- Biaxial nematic phase stability and demixing behaviour in monolayers of rod-plate mixtures