In this work we present a new proposal to model intermolecular interactions and use it for water molecules. The parameters of the model were fitted to reproduce the single molecule's electrostatic properties, a sample of 352 points in a refined ab initio single molecule deformation potential energy surface (PES), and the theoretical limit of the dimerization energy, -20.8 kJ/mol. The model was able to reproduce a sample of 180 additional points in the single molecule deformation PES, and 736 points in a pair-interaction surface computed at the MP2/aug-cc-pVQZ(') level with the counterpoise correction. Though the model reproduced the diagonal of the polarizability tensor, it could account for only 60% of the three-body nonadditive contributi...
Simulating water has always been a challenge. Due to the intrinsic hydrogen bond interactions, water...
A flexible polarizable water model, DPP2-F, has been developed and its applications to vibrational a...
Electronic coarse graining is a technique improving the predictive power of molecular dynamics simu...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
We have performed long molecular dynamics simulations of water using four popular water models, name...
The authors propose a new classical model for the water molecule. The geometry of the molecule is bu...
Molecular simulations of water using classical, molecular mechanic potential energy functions have e...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
The method of flexible constraints was implemented in a Monte Carlo code to perform numerical simula...
A polarizable intermolecular potential model with short-range directional hydrogen-bonding interacti...
International audienceWe present a revised version of the water many-body model TCPE [M. Masella and...
Simulating water has always been a challenge. Due to the intrinsic hydrogen bond interactions, water...
A flexible polarizable water model, DPP2-F, has been developed and its applications to vibrational a...
Electronic coarse graining is a technique improving the predictive power of molecular dynamics simu...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
In this work we present a new proposal to model intermolecular interactions and use it for water mol...
We have performed long molecular dynamics simulations of water using four popular water models, name...
The authors propose a new classical model for the water molecule. The geometry of the molecule is bu...
Molecular simulations of water using classical, molecular mechanic potential energy functions have e...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
Multiscale simulations methods, such as adaptive resolution scheme, are becoming increasingly popula...
The method of flexible constraints was implemented in a Monte Carlo code to perform numerical simula...
A polarizable intermolecular potential model with short-range directional hydrogen-bonding interacti...
International audienceWe present a revised version of the water many-body model TCPE [M. Masella and...
Simulating water has always been a challenge. Due to the intrinsic hydrogen bond interactions, water...
A flexible polarizable water model, DPP2-F, has been developed and its applications to vibrational a...
Electronic coarse graining is a technique improving the predictive power of molecular dynamics simu...