Ab initio computations on simple carbonyl compounds

Citation
Wo. George et al., Ab initio computations on simple carbonyl compounds, J MOL STRUC, 550, 2000, pp. 281-296
Citations number
35
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF MOLECULAR STRUCTURE
ISSN journal
00222860 → ACNP
Volume
550
Year of publication
2000
Pages
281 - 296
Database
ISI
SICI code
0022-2860(20000905)550:<281:AICOSC>2.0.ZU;2-G
Abstract
Assignments of vibrational spectra for formaldehyde, acetaldehyde and aceto ne are briefly reviewed and ab initio Gaussian calculations reported for bo th the Hartree-Fock and the Density Functional Theory method, B3LYP, using ten basis sets up to 6-311 + + G(3df,3pd). Using estimated harmonic values the difference between the calculated and measured carbonyl stretching band is reported. These differences decrease with number of basis functions up to 6-311 + + G(2d,2p) but increase at the highest basis set, 6-311 + + G(3d f,3pd). The electronic energy for the ten basis sets used is reported for b oth the HF and B3LYP methods and decreases with number of basis functions i n a parallel manner up to 6-311++G(2d,2p) but, unlike the carbonyl wavenumb er differences, shows a further reduction at the highest basis set used in line with the variation principle. The calculated wavenumber and intensity values of the normal harmonic modes of formaldehyde, acetaldehyde and aceto ne are reported and compared with published experimental. values using the HF and B3LYP methods with the 6-311+ +G(2d,2p) basis set. The respective RM S error for wavenumber values is 8.8 and 1.4% for formaldehyde, 8.1 and 1.1 % for acetaldehyde and 7.4 and 1.1% for acetone illustrating the greater ac curacy obtained by the existence of electron correlation effects in the sec ond method. The calculated bond lengths, bond angles and dipole moments are compared with published measured values; best agreement occurs using the B 3LYP method with the two highest basis sets used. (C) 2000 Elsevier Science B.Y. All rights reserved.