Chemical potentials of coexisting gas and liquid phases for water, methanol, hydrogen sulphide and carbon dioxide for the temperature range (Formula presented.) K to (Formula presented.) K are computed using two different methodologies: (1) Widom’s test particle insertion (WTPI) method in the conventional Gibbs Ensemble (GE), and (2) the Continuous Fractional Component Gibbs Ensemble Monte Carlo (CFCGE MC) method. It is shown that the WTPI method fails to accurately compute the chemical potentials of water and methanol in the liquid phase at low temperatures, while accurate chemical potentials in the liquid phase are computed using CFCGE MC method. For the CFCGE MC method, the statistical uncertainty for computed chemical potentials of wate...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
Computing bubble-points of multicomponent mixtures using Monte Carlo simulations is a non-trivial ta...
The classical thermodynamic properties of water clusters modeled by the TIP4P potential with and wit...
Chemical potentials of coexisting gas and liquid phases for water, methanol, hydrogen sulphide and c...
We introduce an alternative method to perform free energy calculations for mixtures at multiple temp...
An expression for the chemical potential in the Gibbs ensemble is derived. For finite system sizes t...
A new formulation of the Gibbs ensemble (GE) combined with the continuous fractional component Monte...
In the past decades, molecular simulation has become an important tool for studying phase and reacti...
Monte Carlo simulations were used to calculate water- methane and water- ethane phase equilibria ove...
Molecular simulations were used to compute the equilibrium concentrations of the different species i...
Molecular simulations were used to compute the equilibrium concentrations of the different species i...
Molecular simulations were used to compute the equilibrium concentrations of the different species i...
The CFCMC simulation methodology considers an expanded ensemble to solve the problem of low insertio...
Deep eutectic solvents (DESs) are considered as green alternatives to room temperature ionic liquids...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
Computing bubble-points of multicomponent mixtures using Monte Carlo simulations is a non-trivial ta...
The classical thermodynamic properties of water clusters modeled by the TIP4P potential with and wit...
Chemical potentials of coexisting gas and liquid phases for water, methanol, hydrogen sulphide and c...
We introduce an alternative method to perform free energy calculations for mixtures at multiple temp...
An expression for the chemical potential in the Gibbs ensemble is derived. For finite system sizes t...
A new formulation of the Gibbs ensemble (GE) combined with the continuous fractional component Monte...
In the past decades, molecular simulation has become an important tool for studying phase and reacti...
Monte Carlo simulations were used to calculate water- methane and water- ethane phase equilibria ove...
Molecular simulations were used to compute the equilibrium concentrations of the different species i...
Molecular simulations were used to compute the equilibrium concentrations of the different species i...
Molecular simulations were used to compute the equilibrium concentrations of the different species i...
The CFCMC simulation methodology considers an expanded ensemble to solve the problem of low insertio...
Deep eutectic solvents (DESs) are considered as green alternatives to room temperature ionic liquids...
Monte Carlo (MC) simulations in ensembles with a fixed chemical potential or fugacity, for example t...
Canonical kinetic Monte Carlo (C-kMC) simulations have been carried out to assess their feasibility ...
Computing bubble-points of multicomponent mixtures using Monte Carlo simulations is a non-trivial ta...
The classical thermodynamic properties of water clusters modeled by the TIP4P potential with and wit...