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Accurate Molecular Van Der Waals Interactions from Ground-State Electron Density and Free-Atom Reference Data

Physical Review Letters · 2009 · Vol. 102(7) · pp. 073005–073005
Alexandre TkatchenkoMatthias Scheffler

Abstract

We present a parameter-free method for an accurate determination of long-range van der Waals interactions from mean-field electronic structure calculations. Our method relies on the summation of interatomic C6 coefficients, derived from the electron density of a molecule or solid and accurate reference data for the free atoms. The mean absolute error in the C6 coefficients is 5.5% when compared to accurate experimental values for 1225 intermolecular pairs, irrespective of the employed exchange-correlation functional. We show that the effective atomic C6 coefficients depend strongly on the bonding environment of an atom in a molecule. Finally, we analyze the van der Waals radii and the damping function in the C6R(-6) correction method for density-functional theory calculations.

Advanced Chemical Physics StudiesQuantum, superfluid, helium dynamicsFullerene Chemistry and Applicationsvan der Waals forceVan der Waals radiusIntermolecular forceVan der Waals surfaceAtom (system on chip)PhysicsAtomic physicsVan der Waals strainElectron densityDensity functional theory

Funding

  • Alexander von Humboldt-Stiftung
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