Semiempirical GGA‐type density functional constructed with a long‐range dispersion correction
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Abstract
A new density functional (DF) of the generalized gradient approximation (GGA) type for general chemistry applications termed B97-D is proposed. It is based on Becke's power-series ansatz from 1997 and is explicitly parameterized by including damped atom-pairwise dispersion corrections of the form C(6) x R(-6). A general computational scheme for the parameters used in this correction has been established and parameters for elements up to xenon and a scaling factor for the dispersion part for several common density functionals (BLYP, PBE, TPSS, B3LYP) are reported. The new functional is tested in comparison with other GGAs and the B3LYP hybrid functional on standard thermochemical benchmark sets, for 40…
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Topics
Keywords
- Density functional theory
- Parameterized complexity
- Ansatz
- London dispersion force
- van der Waals force
- Orbital-free density functional theory
- Dispersion (optics)
- Thermochemistry
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- Affordable and clean energy
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