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Conformational analysis, tautomerization, IR, Raman, and NMR studies of benzyl acetoacetate

نویسنده:
سیدفرامرز طیاری
,
Farnaz Naghavi
,
Sahar Pojhan
,
Ryan W. McClurg
,
Robert Erick Sammelson
,
Sayyed Faramarz Tayyari
سال
: 2011
چکیده: A complete conformational analysis of the keto and enol forms of benzyl acetoacetate (BAA), a b-dicarbonyl compound, was carried out by ab initio calculations, at the density functional theory (DFT) level.By inspection of all possible conformers and tautomers, 22 stable cis-enol, 28 stable trans-enol, and five keto conformers were obtained. Among all stable cis-enol forms only six of them are engaged in intramolecular hydrogen bond. The hydrogen bond strength of the most stable conformer of BAA is compared with that of acetylacetone (AA) and dimethyl oxaloacetate (DMOA). Harmonic vibrational frequencies of the most stable enol and keto forms and their deuterated analogues were also calculated and compared with the experimental data. According to the theoretical calculations, the hydrogen bond strength of the most stable enol conformer of BAA is 56.7 kJ/mol (calculated at the B3LYP/6-311++G⁄⁄ level), about 10 kJ/mol less than that of AA. This weakening of hydrogen bond is consistent with the spectroscopic results. NMR studies indicate that BAA exists mainly as a keto tautomer in all considered solutions. The Gibbs energies for keto/enol tautomerization were calculated at the B3LYP level, with several basis sets, in both gas phase and CH3CN solution (using PCM model), for the most stable enol and keto conformers.
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3350030
کلیدواژه(گان): Vibrational spectra,Benzyl acetoacetate,Density functional theory,NMR,Conformational analysis,Tautomerism
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    Conformational analysis, tautomerization, IR, Raman, and NMR studies of benzyl acetoacetate

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contributor authorسیدفرامرز طیاریen
contributor authorFarnaz Naghavien
contributor authorSahar Pojhanen
contributor authorRyan W. McClurgen
contributor authorRobert Erick Sammelsonen
contributor authorSayyed Faramarz Tayyarifa
date accessioned2020-06-06T13:19:14Z
date available2020-06-06T13:19:14Z
date issued2011
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3350030?locale-attribute=fa
description abstractA complete conformational analysis of the keto and enol forms of benzyl acetoacetate (BAA), a b-dicarbonyl compound, was carried out by ab initio calculations, at the density functional theory (DFT) level.By inspection of all possible conformers and tautomers, 22 stable cis-enol, 28 stable trans-enol, and five keto conformers were obtained. Among all stable cis-enol forms only six of them are engaged in intramolecular hydrogen bond. The hydrogen bond strength of the most stable conformer of BAA is compared with that of acetylacetone (AA) and dimethyl oxaloacetate (DMOA). Harmonic vibrational frequencies of the most stable enol and keto forms and their deuterated analogues were also calculated and compared with the experimental data. According to the theoretical calculations, the hydrogen bond strength of the most stable enol conformer of BAA is 56.7 kJ/mol (calculated at the B3LYP/6-311++G⁄⁄ level), about 10 kJ/mol less than that of AA. This weakening of hydrogen bond is consistent with the spectroscopic results. NMR studies indicate that BAA exists mainly as a keto tautomer in all considered solutions. The Gibbs energies for keto/enol tautomerization were calculated at the B3LYP level, with several basis sets, in both gas phase and CH3CN solution (using PCM model), for the most stable enol and keto conformers.en
languageEnglish
titleConformational analysis, tautomerization, IR, Raman, and NMR studies of benzyl acetoacetateen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsVibrational spectraen
subject keywordsBenzyl acetoacetateen
subject keywordsDensity functional theoryen
subject keywordsNMRen
subject keywordsConformational analysisen
subject keywordsTautomerismen
journal titleJournal of Molecular Structurefa
pages241-254
journal volume987
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1042052.html
identifier articleid1042052
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