Repulsive short-range and attractive long-range van der Waals (vdW) forces have an appreciable role in the behavior of extended molecular systems. When using empirical force fields - the most popular computational methods applied to such systems - vdW forces are typically described by Lennard-Jones-like potentials, which unfortunately have a limited predictive power. Here, we present a universal parameterization of a quantum-mechanical vdW potential, which requires only two free-atom properties - the static dipole polarizability $\alpha_1$ and the dipole-dipole $C_6$ dispersion coefficient. This is achieved by deriving the functional form of the potential from the quantum Drude oscillator (QDO) model, employing scaling laws for the equilibr...
Standard implementations of density functional theory (DFT) describe well strongly bound molecules a...
We propose a second version of the van der Waals density functional of Dion et al. [Phys. Rev. Lett....
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...
Van der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and play a crucia...
Van der Waals (vdW) forces act ubiquitously in condensed matter. Their description as an inherently ...
Noncovalent van der Waals (vdW) or dispersion forces are ubiquitous in nature and influence the stru...
An efficient method is developed for the microscopic description of the frequency-dependent polariza...
We estimate polarizabilities of atoms in molecules without electron density, using a Voronoi tessela...
Intermolecular interactions are paramount for the stability, dynamics and response of systems acros...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
Recently, we have introduced a scheme for optimizing atom-based nonlocal external potentials within ...
It is an undisputed textbook fact that nonretarded van der Waals (vdW) interactions between isotropi...
Standard implementations of density functional theory (DFT) describe well strongly bound molecules a...
We propose a second version of the van der Waals density functional of Dion et al. [Phys. Rev. Lett....
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...
Van der Waals (vdW) interactions are ubiquitous in molecules and condensed matter, and play a crucia...
Van der Waals (vdW) forces act ubiquitously in condensed matter. Their description as an inherently ...
Noncovalent van der Waals (vdW) or dispersion forces are ubiquitous in nature and influence the stru...
An efficient method is developed for the microscopic description of the frequency-dependent polariza...
We estimate polarizabilities of atoms in molecules without electron density, using a Voronoi tessela...
Intermolecular interactions are paramount for the stability, dynamics and response of systems acros...
Noncovalent van der Waals (vdW) interactions are responsible for a wide range of phenomena in matter...
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...
This work reviews the increasing evidence that many-body van der Waals (vdW) or dispersion interacti...
Recently, we have introduced a scheme for optimizing atom-based nonlocal external potentials within ...
It is an undisputed textbook fact that nonretarded van der Waals (vdW) interactions between isotropi...
Standard implementations of density functional theory (DFT) describe well strongly bound molecules a...
We propose a second version of the van der Waals density functional of Dion et al. [Phys. Rev. Lett....
Mixed multiscale quantum/molecular mechanics (QM/MM) models are widely used to explore the structure...