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Self-consistent molecular orbital methods. XX. A basis set for correlated wave functions
The Journal of Chemical Physics · 1980 · Vol. 72(1) · pp. 650–654
R. Krishnan✉(Carnegie Mellon University)J. Stephen Binkley(Carnegie Mellon University)Rolf Seeger(Carnegie Mellon University)John A. Pople(Carnegie Mellon University)
Abstract
A contracted Gaussian basis set (6-311G**) is developed by optimizing exponents and coefficients at the Mo/ller–Plesset (MP) second-order level for the ground states of first-row atoms. This has a triple split in the valence s and p shells together with a single set of uncontracted polarization functions on each atom. The basis is tested by computing structures and energies for some simple molecules at various levels of MP theory and comparing with experiment.
Advanced Chemical Physics StudiesMolecular spectroscopy and chiralitySpectroscopy and Quantum Chemical StudiesBasis setWave functionGaussianValence (chemistry)Basis (linear algebra)STO-nG basis setsAtomic physicsBasis functionPhysicsPolarization (electrochemistry)
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References
Self-Consistent Molecular-Orbital Methods. I. Use of Gaussian Expansions of Slater-Type Atomic Orbitals
The Journal of Chemical Physics · 1969 · 4,171 citations
Note on an Approximation Treatment for Many-Electron Systems
Physical Review · 1934 · 14,467 citations
Self—Consistent Molecular Orbital Methods. XII. Further Extensions of Gaussian—Type Basis Sets for Use in Molecular Orbital Studies of Organic Molecules
The Journal of Chemical Physics · 1972 · 15,556 citations
Self-Consistent Molecular-Orbital Methods. IX. An Extended Gaussian-Type Basis for Molecular-Orbital Studies of Organic Molecules
The Journal of Chemical Physics · 1971 · 10,397 citations
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