We present a computer simulation study of binary mixtures of prolate Gay-Berne particles and Lennard-Jones spheres. Results are presented for three such rod-sphere systems which differ from each other only in the interaction between unlike particles. Both the mixing-demixing behavior and the transitions between the isotropic and any liquid crystalline phases are studied for each system, as a function of temperature and concentration ratio. For systems which show macroscopic demixing, the rod-sphere interaction is shown to give direct control over interfacial anchoring properties, giving rise to the possibility of micellar phase formation in the case of homeotropic anchoring. Additionally, it is shown that on incorporating high concentration...
We present a computer simulation study of a colloidal particle immersed in a solvent comprising liqu...
A suspension of rodlike colloidal particles and rodlike liquid crystalline polymers is modelled as a...
We consider the free interface between demixed fluid phases in a mixture of hard spheres and vanishi...
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
Results are presented from Monte Carlo simulations of bulk mixtures of Hard Gaussian Overlap particl...
Parsons-Lee and Onsager theories are formulated for the isotropic-nematic transition in a binary mix...
The central aim of this thesis is to theoretically investigate the effects of mixing anisometric col...
When non-adsorbing polymers are added to an isotropic suspension of rod-like colloids, the colloids ...
When non-adsorbing polymers are added to an isotropic suspension of rod-like colloids, the colloids ...
Different scenarios for assembling rod-like and spherical colloidal particles using binary mixtures...
A molecular simulation study of binary mixtures of hard spherocylinders (HSCs) and hard spheres (HSs...
We examine the influence of attractive interactions on the phase behavior of rodlike colloids. We mo...
Using recently derived analytical equations of state for hard rod dispersions, we predict the phase ...
There is increasing evidence that entropy can induce microphase separation in binary fluid mixtures ...
We present a computer simulation study of a colloidal particle immersed in a solvent comprising liqu...
A suspension of rodlike colloidal particles and rodlike liquid crystalline polymers is modelled as a...
We consider the free interface between demixed fluid phases in a mixture of hard spheres and vanishi...
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
Results are presented from Monte Carlo simulations of bulk mixtures of Hard Gaussian Overlap particl...
Parsons-Lee and Onsager theories are formulated for the isotropic-nematic transition in a binary mix...
The central aim of this thesis is to theoretically investigate the effects of mixing anisometric col...
When non-adsorbing polymers are added to an isotropic suspension of rod-like colloids, the colloids ...
When non-adsorbing polymers are added to an isotropic suspension of rod-like colloids, the colloids ...
Different scenarios for assembling rod-like and spherical colloidal particles using binary mixtures...
A molecular simulation study of binary mixtures of hard spherocylinders (HSCs) and hard spheres (HSs...
We examine the influence of attractive interactions on the phase behavior of rodlike colloids. We mo...
Using recently derived analytical equations of state for hard rod dispersions, we predict the phase ...
There is increasing evidence that entropy can induce microphase separation in binary fluid mixtures ...
We present a computer simulation study of a colloidal particle immersed in a solvent comprising liqu...
A suspension of rodlike colloidal particles and rodlike liquid crystalline polymers is modelled as a...
We consider the free interface between demixed fluid phases in a mixture of hard spheres and vanishi...