Scinovex
articleTop 1% cited

Self-Consistent Molecular-Orbital Methods. IX. An Extended Gaussian-Type Basis for Molecular-Orbital Studies of Organic Molecules

The Journal of Chemical Physics · 1971 · Vol. 54(2) · pp. 724–728
R. DitchfieldWarren J. HehreJohn A. Pople

Abstract

An extended basis set of atomic functions expressed as fixed linear combinations of Gaussian functions is presented for hydrogen and the first-row atoms carbon to fluorine. In this set, described as 4–31 G, each inner shell is represented by a single basis function taken as a sum of four Gaussians and each valence orbital is split into inner and outer parts described by three and one Gaussian function, respectively. The expansion coefficients and Gaussian exponents are determined by minimizing the total calculated energy of the atomic ground state. This basis set is then used in single-determinant molecular-orbital studies of a group of small polyatomic molecules. Optimization of valence-shell scaling factors shows that considerable rescaling of atomic functions occurs in molecules, the largest effects being observed for hydrogen and carbon. However, the range of optimum scale factors for each atom is small enough to allow the selection of a standard molecular set. The use of this standard basis gives theoretical equilibrium geometries in reasonable agreement with experiment.

Chemical Thermodynamics and Molecular StructureVarious Chemistry Research TopicsAnalytical Chemistry and ChromatographySTO-nG basis setsBasis setGaussianChemistryMolecular orbitalValence (chemistry)Atomic physicsFragment molecular orbitalScalingHydrogen atom

Funding

  • National Science Foundation
Citations
10,397
FWCI
42.27
field-weighted impact
References
20
Percentile
100%
vs. same field & year
Citations per year
References
New Developments in Molecular Orbital Theory
Reviews of Modern Physics · 1951 · 5,468 citations
Electronic wave functions - I. A general method of calculation for the stationary states of any molecular system
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1950 · 1,249 citations
Gaussian-Type Functions for Polyatomic Systems. I
The Journal of Chemical Physics · 1965 · 4,957 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.