In this paper we formulate a nonlocal density functional theory of inhomogeneous water. We model a water molecule as a couple of oppositely charged sites. The negatively charged sites interact with each other through the Lennard–Jones potential (steric and dispersion interactions), square-well potential (short-range specific interactions due to electron charge transfer), and Coulomb potential, whereas the positively charged sites interact with all types of sites by applying the Coulomb potential only. Taking into account the nonlocal packing effects via the fundamental measure theory, dispersion and specific interactions in the mean-field approximation, and electrostatic interactions at the many-body level through the random phase approxima...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar stat...
A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar stat...
We investigate the structural properties of liquid water at near ambient conditions using first-prin...
Nanoconfined water and aqueous solutions play a prominent role in nature and technological applicati...
A classical density functional formalism has been developed to predict the position-orientation numb...
International audienceCan we avoid molecular dynamics simulations to estimate the electrostatic inte...
Water is a ubiquitous liquid that displays a wide range of anomalous properties and has a delicate s...
We present an extension of our recently introduced molecular density functional the-ory of water [G....
Many anomalous properties of water can be explained on the basis of the coexistence of more than one...
International audienceCan we avoid molecular dynamics simulations to estimate the electrostatic inte...
An improved density functional theory (DFT) for an inhomogeneous charged system (including electroly...
International audienceCan we avoid molecular dynamics simulations to estimate the electrostatic inte...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar stat...
A Helmholtz energy functional for inhomogeneous fluid phases based on the perturbed-chain polar stat...
We investigate the structural properties of liquid water at near ambient conditions using first-prin...
Nanoconfined water and aqueous solutions play a prominent role in nature and technological applicati...
A classical density functional formalism has been developed to predict the position-orientation numb...
International audienceCan we avoid molecular dynamics simulations to estimate the electrostatic inte...
Water is a ubiquitous liquid that displays a wide range of anomalous properties and has a delicate s...
We present an extension of our recently introduced molecular density functional the-ory of water [G....
Many anomalous properties of water can be explained on the basis of the coexistence of more than one...
International audienceCan we avoid molecular dynamics simulations to estimate the electrostatic inte...
An improved density functional theory (DFT) for an inhomogeneous charged system (including electroly...
International audienceCan we avoid molecular dynamics simulations to estimate the electrostatic inte...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...
International audienceThree-dimensional implementations of liquid-state theories offer an efficient ...