The applicability of the Wolf method for calculating electrostatic interactions is verified for simulating vapor-liquid equilibria of hydrogen sulfide, methanol, and carbon dioxide. Densities, chemical potentials, and critical properties are obtained with Monte Carlo simulations using the Continuous Fractional Component version of the Gibbs Ensemble. Saturated vapor pressures are obtained from NPT simulations. Excellent agreement is found between simulation results and data from literature (simulations using the Ewald summation). It is also shown how to choose the optimal parameters for the Wolf method. Even though the Wolf method requires a large simulation box in the gas phase, due to the lack of screening of electrostatics, one can consi...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
A parametrization strategy for molecular models on the basis of force fields is proposed, which allo...
Monte Carlo simulation (MC) is combined with equations of state (EoS) to develop a methodology for t...
The applicability of the Wolf method for calculating electrostatic interactions is verified for simu...
A modification of the Wolf method [Wolf et al. J. Chem. Phys. 1999, 110, 8254−8282], a spherically ...
This article explores how well vapor-liquid equilibria of pure components and binary mixtures of xyl...
In the past decades, molecular simulation has become an important tool for studying phase and reacti...
The vapor-liquid equilibria of 20 substances, most of them widely used as organic solvents, were obt...
The Wolf method for calculation of electrostatic interactions in molecular simulations is known to d...
AbstractIn this work, a method to estimate solid elemental sulfur solubility in pure and gas mixture...
alcohol/water/salt mixtures; salt effect We review Gibbs ensemble Monte Carlo sjmulations of vapor-l...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
This work presents the molecular simulation program ms2 that is designed for the calculation of ther...
Knowledge of physical properties of pure components and mixtures is essential when designing new pro...
In this work, we have been carried out GEMC-NVT simulations in the temperature range 18 K-32 K for f...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
A parametrization strategy for molecular models on the basis of force fields is proposed, which allo...
Monte Carlo simulation (MC) is combined with equations of state (EoS) to develop a methodology for t...
The applicability of the Wolf method for calculating electrostatic interactions is verified for simu...
A modification of the Wolf method [Wolf et al. J. Chem. Phys. 1999, 110, 8254−8282], a spherically ...
This article explores how well vapor-liquid equilibria of pure components and binary mixtures of xyl...
In the past decades, molecular simulation has become an important tool for studying phase and reacti...
The vapor-liquid equilibria of 20 substances, most of them widely used as organic solvents, were obt...
The Wolf method for calculation of electrostatic interactions in molecular simulations is known to d...
AbstractIn this work, a method to estimate solid elemental sulfur solubility in pure and gas mixture...
alcohol/water/salt mixtures; salt effect We review Gibbs ensemble Monte Carlo sjmulations of vapor-l...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
This work presents the molecular simulation program ms2 that is designed for the calculation of ther...
Knowledge of physical properties of pure components and mixtures is essential when designing new pro...
In this work, we have been carried out GEMC-NVT simulations in the temperature range 18 K-32 K for f...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
A parametrization strategy for molecular models on the basis of force fields is proposed, which allo...
Monte Carlo simulation (MC) is combined with equations of state (EoS) to develop a methodology for t...