Title of article
The molecular structure, spin–vibronic energy levels, and thermochemistry of CH3O%
Author/Authors
Aleksandr V. Marenich، نويسنده , , James E. Boggs*، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
8
From page
163
To page
170
Abstract
Ab initio calculations of the molecular structure and thermochemical properties of the methoxy CH3O radical were performed. Partition
functions were calculated beyond the ‘standard’ rigid rotor-harmonic oscillator approach by means of the explicit summation of
eigenenergies of a spin–vibronic Hamiltonian that included the linear, quadratic, cubic, and quartic Jahn–Teller terms with account for all
important anharmonic effects. The heat of formation DfH+
298:15 K(CH3O)Z23.3G0.9 kJ/mol was evaluated by a study of the reactions of C–H
and C–O bond dissociations and atomization of CH3O. Total energies computed with the use of the coupled cluster electron correlation
technique CCSD(T) were extrapolated to the complete basis set limit with account for spin–orbit, scalar relativistic, and core–valence
correlation corrections.
q 2005 Elsevier B.V. All rights reserved.
Keywords
Jahn–Teller effect , Methoxy , Thermochemistry , Spin–orbit splitting , Vibronic , molecular structure , CH3O
Journal title
Journal of Molecular Structure
Serial Year
2006
Journal title
Journal of Molecular Structure
Record number
845223
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