Consistent structures and interactions by density functional theory with small atomic orbital basis sets
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Abstract
A density functional theory (DFT) based composite electronic structure approach is proposed to efficiently compute structures and interaction energies in large chemical systems. It is based on the well-known and numerically robust Perdew-Burke-Ernzerhoff (PBE) generalized-gradient-approximation in a modified global hybrid functional with a relatively large amount of non-local Fock-exchange. The orbitals are expanded in Ahlrichs-type valence-double zeta atomic orbital (AO) Gaussian basis sets, which are available for many elements. In order to correct for the basis set superposition error (BSSE) and to account for the important long-range London dispersion effects, our well-established atom-pairwise potentials…
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4Topics & keywords
Topics
Keywords
- Density functional theory
- Gaussian
- Atomic orbital
- Valence (chemistry)
- Statistical physics
- Basis (linear algebra)
- Electronic structure
- Atom (system on chip)
UN Sustainable Development Goals
- Affordable and clean energy
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