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Equilibrium structure in the presence of internal rotation: A case study of cis-methyl formate
Authors:J Demaison  L Margulès  AG Császár
Institution:a Laboratoire de Chimie quantique et Photophysique, CP160/09, Université Libre de Bruxelles (U.L.B.), Ave. F.D. Roosevelt, 50, B-1050 Brussels, Belgium
b Laboratoire de Physique des Lasers, Atomes et Molécules, UMR CNRS 8523, Université de Lille I, 59655 Villeneuve d’Ascq Cedex, France
c Laboratoire Interuniversitaire des Systèmes Atmosphériques (LISA), CNRS UMR 7583 et Universités Paris 7 et Paris 12, 61 av. du Général de Gaulle, 94010 Créteil, Cédex, France
d Laboratory of Molecular Spectroscopy, Institute of Chemistry, Eötvös University, H-1518 Budapest 112, P.O. Box 32, Hungary
Abstract:The Born-Oppenheimer (BO) equilibrium molecular structure (View the MathML source) of cis-methyl formate has been determined at the CCSD(T) level of electronic structure theory using Gaussian basis sets of at least quadruple-ζ quality and a core correlation correction. The quadratic, cubic and semi-diagonal quartic force field in normal coordinates has also been computed at the MP2 level employing a basis set of triple-ζ quality. A semi-experimental equilibrium structure (View the MathML source) has been derived from experimental ground-state rotational constants and the lowest-order rovibrational interaction parameters calculated from the ab initio cubic force field. To determine View the MathML source structures, it is important to start from accurate ground-state rotational constants. Different spectroscopic methods, applicable in the presence of internal rotation and used in the literature to obtain “unperturbed” rotational constants from the analysis and fitting of the spectrum, are reviewed and compared. They are shown to be compatible though their precision may be different. The View the MathML source and View the MathML source structures are in good agreement showing that, in the particular case of cis-methyl formate, the methyl torsion can still be treated as a small-amplitude vibration. The best equilibrium structure obtained for cis-methyl formate is: r(Cm-O) = 1.434 Å, r(O-Cc) = 1.335 Å, r(Cm-Hs) = 1.083 Å, r(Cm-Ha) = 1.087 Å, r(Cc-H) = 1.093 Å, r(Cdouble bond; length as m-dashO) = 1.201 Å, (COC) = 114.4°, (CCHs) = 105.6°, (CCHa) = 110.2°, (OCH) = 109.6°, (OCO) = 125.5°, and τ(HaCOC) = 60.3°. The accuracy is believed to be about 0.001 Å for the bond lengths and 0.1° for the angles.
Keywords:Ab initio  Equilibrium structure  Semi-experimental  Internal rotation  Methyl formate
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