A parametrization strategy for molecular models on the basis of force fields is proposed, which allows a rapid development of models for small molecules by using results from quantum mechanical (QM) ab initio calculations and thermodynamic data. The geometry of the molecular models is specified according to the atom positions determined by QM energy minimization. The electrostatic interactions are modeled by reducing the electron density distribution to point dipoles and point quadrupoles located in the center of mass of the molecules. Dispersive and repulsive interactions are described by Lennard-Jones sites, for which the parameters are iteratively optimized to experimental vapor-liquid equilibrium (VLE) data, i.e., vapor pressure, satura...
International audienceA classical force field is proposed for the molecular simulation of primary al...
A methodology to predict the thermodynamics of macroscopic fluid systems from quantum chemistry and ...
A methodology to predict the thermodynamics of macroscopic fluid systems from quantum chemistry and ...
A new strategy to develop force fields for molecular fluids is presented. The intermolecular paramet...
This dissertation presents the results of atomistic molecular simulations. Therefor systems of varyi...
A selection of several aromatic molecules, representative of the important class of heterocyclic com...
A selection of several aromatic molecules, representative of the important class of heterocyclic com...
Combined ab initio/empirical forcefield molecular dynamics (QM/MM) simulations are considered to be ...
Combined ab initio/empirical forcefield molecular dynamics (QM/MM) simulations are considered to be ...
An extension of the transferable potentials for phase equilibria united-atom (TraPPE-UA) force field...
This book discusses the fundamentals of molecular simulation, starting with the basics of statistica...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...
We have developed a general predictive method for vapor pressures and enthalpies of vaporization bas...
International audienceA classical force field is proposed for the molecular simulation of primary al...
We have developed a general predictive method for vapor pressures and enthalpies of vaporization bas...
International audienceA classical force field is proposed for the molecular simulation of primary al...
A methodology to predict the thermodynamics of macroscopic fluid systems from quantum chemistry and ...
A methodology to predict the thermodynamics of macroscopic fluid systems from quantum chemistry and ...
A new strategy to develop force fields for molecular fluids is presented. The intermolecular paramet...
This dissertation presents the results of atomistic molecular simulations. Therefor systems of varyi...
A selection of several aromatic molecules, representative of the important class of heterocyclic com...
A selection of several aromatic molecules, representative of the important class of heterocyclic com...
Combined ab initio/empirical forcefield molecular dynamics (QM/MM) simulations are considered to be ...
Combined ab initio/empirical forcefield molecular dynamics (QM/MM) simulations are considered to be ...
An extension of the transferable potentials for phase equilibria united-atom (TraPPE-UA) force field...
This book discusses the fundamentals of molecular simulation, starting with the basics of statistica...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...
We have developed a general predictive method for vapor pressures and enthalpies of vaporization bas...
International audienceA classical force field is proposed for the molecular simulation of primary al...
We have developed a general predictive method for vapor pressures and enthalpies of vaporization bas...
International audienceA classical force field is proposed for the molecular simulation of primary al...
A methodology to predict the thermodynamics of macroscopic fluid systems from quantum chemistry and ...
A methodology to predict the thermodynamics of macroscopic fluid systems from quantum chemistry and ...