We describe algorithms for the recently developed Bin-Monte Carlo (Bin-MC) method (Fan et al., 2012) and kinetic Monte Carlo (kMC) (Ustinov and Do, 2012) to simulate binary liquid mixtures, and compare them with simulations of vapour-liquid equilibria from the canonical and Gibbs MC methods. We have found that in kMC, the rule to choose a molecule to move rests purely on the mobility, irrespective of molecular weight. In the Bin-MC, the choice of a molecule to move from one bin to another bin depends on the selection of a component with equal probability. Our simulations show that the Bin-MC and kMC schemes are very effective for the purpose of describing thermodynamic properties and density profiles across the vapour-liquid interface, and ...
The physical adsorption of a fluid by a solid is a subject of broad scientific and engineering inter...
The phase behaviour of both pure systems and binary mixtures has been widely studied by molecular si...
We describe a kinetic Monte Carlo molecular simulation procedure to calculate the Helmholtz free ene...
A new scheme for Monte Carlo simulation, Bin-CMC, that was introduced recently by Fan et al. (C. Fan...
We investigate the consistency of the simulation methodology for fluid phase equilibria and mixture ...
Kinetic Monte Carlo (kMC) simulations were carried out to describe the vapour-liquid equilibria of a...
Abstract: A rejection-free methodology-based kinetic Monte Carlo (kMC) method has been developed in ...
We present a novel application of kinetic Monte Carlo (kMC) to describe vapour-liquid equilibria (VL...
We present a novel application of kinetic Monte Carlo (k. MC) to describe vapour-liquid equilibria (...
This paper aims to show the consistency between simulations of fluid phase properties, obtained with...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
A kinetic Monte Carlo (kMC) scheme in the NPT ensemble (constant number of molecules, pressure and t...
Recently, kinetic Monte Carlo (kMC) simulation has been successfully applied to describe bulk fluid ...
Knowledge of physical properties of pure components and mixtures is essential when designing new pro...
We introduce a new and effective Monte Carlo scheme to simulate adsorption on surfaces and in pores....
The physical adsorption of a fluid by a solid is a subject of broad scientific and engineering inter...
The phase behaviour of both pure systems and binary mixtures has been widely studied by molecular si...
We describe a kinetic Monte Carlo molecular simulation procedure to calculate the Helmholtz free ene...
A new scheme for Monte Carlo simulation, Bin-CMC, that was introduced recently by Fan et al. (C. Fan...
We investigate the consistency of the simulation methodology for fluid phase equilibria and mixture ...
Kinetic Monte Carlo (kMC) simulations were carried out to describe the vapour-liquid equilibria of a...
Abstract: A rejection-free methodology-based kinetic Monte Carlo (kMC) method has been developed in ...
We present a novel application of kinetic Monte Carlo (kMC) to describe vapour-liquid equilibria (VL...
We present a novel application of kinetic Monte Carlo (k. MC) to describe vapour-liquid equilibria (...
This paper aims to show the consistency between simulations of fluid phase properties, obtained with...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
A kinetic Monte Carlo (kMC) scheme in the NPT ensemble (constant number of molecules, pressure and t...
Recently, kinetic Monte Carlo (kMC) simulation has been successfully applied to describe bulk fluid ...
Knowledge of physical properties of pure components and mixtures is essential when designing new pro...
We introduce a new and effective Monte Carlo scheme to simulate adsorption on surfaces and in pores....
The physical adsorption of a fluid by a solid is a subject of broad scientific and engineering inter...
The phase behaviour of both pure systems and binary mixtures has been widely studied by molecular si...
We describe a kinetic Monte Carlo molecular simulation procedure to calculate the Helmholtz free ene...