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Higher-accuracy van der Waals density functional

Physical Review B · 2010 · Vol. 82(8)
Kyuho LeeÉamonn MurrayLingzhu KongBengt I. LundqvistDavid C. Langreth

Abstract

We propose a second version of the van der Waals density functional of Dion et al. [Phys. Rev. Lett. 92, 246401 (2004)], employing a more accurate semilocal exchange functional and the use of a large-$N$ asymptote gradient correction in determining the vdW kernel. The predicted binding energy, equilibrium separation, and potential-energy curve shape are close to those of accurate quantum chemical calculations on 22 duplexes. We anticipate the enabling of chemically accurate calculations in sparse materials of importance for condensed matter, surface, chemical, and biological physics.

Advanced Chemical Physics StudiesGraphene research and applicationsMolecular Junctions and Nanostructuresvan der Waals forceAsymptoteDensity functional theoryQuantum chemicalVan der Waals surfaceBinding energyPhysicsVan der Waals strainKernel (algebra)Energy (signal processing)

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Lundbeckfonden
  • H. Lundbeck A/S
  • Division of Materials Research
  • Kavli Institute for Theoretical Physics, University of California, Santa Barbara
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