articleJournal of Computational ChemistryMar 1, 2011Closed access

Effect of the damping function in dispersion corrected density functional theory

University of Münster · Institute of Organic Chemistry

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Abstract

It is shown by an extensive benchmark on molecular energy data that the mathematical form of the damping function in DFT-D methods has only a minor impact on the quality of the results. For 12 different functionals, a standard "zero-damping" formula and rational damping to finite values for small interatomic distances according to Becke and Johnson (BJ-damping) has been tested. The same (DFT-D3) scheme for the computation of the dispersion coefficients is used. The BJ-damping requires one fit parameter more for each functional (three instead of two) but has the advantage of avoiding repulsive interatomic forces at shorter distances. With BJ-damping better results for nonbonded distances and more clear effects…

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Authors

3

Topics & keywords

Keywords
  • Dispersion (optics)
  • Intermolecular force
  • Intramolecular force
  • London dispersion force
  • Function (biology)
  • Benchmark (surveying)
  • Density functional theory
  • Range (aeronautics)
UN Sustainable Development Goals
  • Affordable and clean energy
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