Nonlocal van der Waals density functional: The simpler the better
arXiv:1009.1421 · doi:10.1063/1.3521275
Abstract
We devise a nonlocal correlation energy functional that describes the entire range of dispersion interactions in a seamless fashion using only the electron density as input. The new functional is considerably simpler than its predecessors of a similar type. The functional has a tractable and robust analytic form that lends itself to efficient self-consistent implementation. When paired with an appropriate exchange functional, our nonlocal correlation model yields accurate interaction energies of weakly-bound complexes, not only near the energy minima but also far from equilibrium. Our model exhibits an outstanding precision at predicting equilibrium intermonomer separations in van der Waals complexes. It also gives accurate covalent bond lengths and atomization energies. Hence the functional proposed in this work is a computationally inexpensive electronic structure tool of broad applicability.
References in corpus (4)
- A Higher-Accuracy van der Waals Density Functional
- Range-separated density-functional theory with random phase approximation applied to noncovalent intermolecular interactions
- Relevance of the slowly-varying electron gas to atoms, molecules, and solids
- Low Temperature Electronic Transport and Electron Transfer through Organic Macromolecules
Cited by in corpus (21)
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- Van der Waals bonding in layered compounds from advanced first-principles calculations
- Perspective: Advances and challenges in treating van der Waals dispersion forces in density functional theory
- van der Waals forces in density functional theory: The vdW-DF method
- The role of van der Waals forces in water adsorption on metals
- Rehabilitation of PBE-GGA for Layered Materials
- Polarization effects in ionic solids and melts
- Are we van der Waals ready?
- Testing several recent van der Waals density functionals for layered structures
- Strain-shear coupling in bilayer MoS2
- van der Waals density functionals built upon the electron-gas tradition: Facing the challenge of competing interactions
- A periodic Energy Decomposition Analysis (pEDA) method for the Investigation of Chemical Bonding in Extended Systems
- Isobaric first-principles molecular dynamics of liquid water with nonlocal van der Waals interactions
- A van der Waals density functional for solids
- Effects of van der Waals Interactions in the Adsorption of Isooctane and Ethanol on Fe(100) Surfaces
- Short- and long-range corrected hybrid density functionals with the D3 dispersion corrections
- Liquid Water through Density-Functional Molecular Dynamics: Plane-Wave vs Atomic-Orbital Basis Sets
- Range-separated meta-GGA functional designed for noncovalent interactions
- Improving the Description of Nonmagnetic and Magnetic Molecular Crystals via the van der Waals Density Functional
- Low-pressure phase diagram of crystalline benzene from quantum Monte Carlo
- A first-principles-based correlation functional for harmonious connection of short-range correlation and long-range dispersion