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May 15, 1989The Journal of Chemical Physics1,515 citations

Gaussian-1 theory: A general procedure for prediction of molecular energies

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JPJohn A. PopleMHMartin Head‐GordonDFDouglas J. Fox

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Abstract

A general procedure is developed for the computation of the total energies of molecules at their equilibrium geometries. Ab initio molecular orbital theory is used to calculate electronic energies by a composite method, utilizing large basis sets (including diffuse-sp, double-d and f-polarization functions) and treating electron correlation by Mo/ller–Plesset perturbation theory and by quadratic configuration interaction. The theory is also used to compute zero-point vibrational energy corrections. Total atomization energies for a set of 31 molecules are found to agree with experimental thermochemical data to an accuracy greater than 2 kcal mol−1 in most cases. Similar agreement is achieved for ionization energies, electron and proton affinities. Residual errors are assessed for the total energies of neutral atoms.

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Pople et al. (1989) studied this question.

synapsesocial.com/papers/6a06bbf66b3d000707582ec0https://doi.org/10.1063/1.456415
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