том 80 издание 5 страницы 517-527

Kinetics of glycoluril template-directed Claisen condensations and mechanistic implications

Тип публикацииJournal Article
Дата публикации2002-05-01
scimago Q3
wos Q4
БС3
SJR0.254
CiteScore2
Impact factor1
ISSN00084042, 14803291
General Chemistry
Catalysis
Organic Chemistry
Краткое описание

Eight N-acetyl-N-aroyl-glycolurils were prepared and found to undergo efficient tert-butoxide-promoted Claisen-like condensation between the two acyl moieties. The kinetics for formation of each of the N-(aroylacetyl)gly coluril products were monitored by UV spectroscopy. The reaction exhibited pseudo-first-order kinetics in substrate in the presence of excess base. For the parent benzoyl compound the observed first-order rate constant (kobs) was linearly dependent on the concentration of the base, tert-butoxide. A Hammett plot of the resulting apparent second-order rate constants (kapp) vs. σ for each of the eight aroyl derivatives was linear and had a positive ρ value 1.04 ± 0.04), demonstrating that the substituent on the aromatic ring exerts a significant effect upon the condensation reaction. The corresponding plot for three [D3]acetyl analogues was also linear, but the slope was reduced by 20% relative to the protonated compounds. The isotope effect (kHapp/kDapp) thus increased from 1.4 (benzoyl) to 2.6 (p-nitrobenzoyl). The results are consistent with a three-step mechanism in which both deprotonation of the acetyl entity and the ensuing nucleophilic attack of the resulting enolate on the benzoyl group are partially rate-determining steps. The tetrahedral intermediate thus produced rapidly collapses to the product. For the [D3]acetyl benzoyl derivative, exchange of substrate deuterium with solvent hydrogen due to reprotonation of the enolate intermediate occurs at a rate that is similar to that of condensation, but the enolate partitions towards the product when electron withdrawing groups are present in the aroyl ring. Thus, despite the presence of a large excess of co-solvent tert-butanol, the efficiency with which the enolate undergoes condensation remains high. The clean kinetics observed allows further exploration of the details of this intramolecular Claisen-like condensation process.Key words: Claisen condensation, glycoluril, kinetics, Hammett, mechanism.

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Rahimizadeh M. et al. Kinetics of glycoluril template-directed Claisen condensations and mechanistic implications // Canadian Journal of Chemistry. 2002. Vol. 80. No. 5. pp. 517-527.
ГОСТ со всеми авторами (до 50) Скопировать
Rahimizadeh M., Kam K., Jenkins S. I., JENKINS S. W., McDonald R. S., McDonald R. A. J., Harrison P. H., Harrison P. Kinetics of glycoluril template-directed Claisen condensations and mechanistic implications // Canadian Journal of Chemistry. 2002. Vol. 80. No. 5. pp. 517-527.
RIS |
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TY - JOUR
DO - 10.1139/v02-071
UR - https://doi.org/10.1139/v02-071
TI - Kinetics of glycoluril template-directed Claisen condensations and mechanistic implications
T2 - Canadian Journal of Chemistry
AU - Rahimizadeh, Mohammad
AU - Kam, Karen
AU - Jenkins, Stephen I.
AU - JENKINS, STEPHEN W.
AU - McDonald, Robert S.
AU - McDonald, Robert A. J.
AU - Harrison, Paul HM
AU - Harrison, Paul
PY - 2002
DA - 2002/05/01
PB - Canadian Science Publishing
SP - 517-527
IS - 5
VL - 80
SN - 0008-4042
SN - 1480-3291
ER -
BibTex |
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@article{2002_Rahimizadeh,
author = {Mohammad Rahimizadeh and Karen Kam and Stephen I. Jenkins and STEPHEN W. JENKINS and Robert S. McDonald and Robert A. J. McDonald and Paul HM Harrison and Paul Harrison},
title = {Kinetics of glycoluril template-directed Claisen condensations and mechanistic implications},
journal = {Canadian Journal of Chemistry},
year = {2002},
volume = {80},
publisher = {Canadian Science Publishing},
month = {may},
url = {https://doi.org/10.1139/v02-071},
number = {5},
pages = {517--527},
doi = {10.1139/v02-071}
}
MLA
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Rahimizadeh, Mohammad, et al. “Kinetics of glycoluril template-directed Claisen condensations and mechanistic implications.” Canadian Journal of Chemistry, vol. 80, no. 5, May. 2002, pp. 517-527. https://doi.org/10.1139/v02-071.