4.6 Article

The DMAP-catalyzed acetylation of alcohols - A mechanistic study (DMAP=4-(dimethylamino)pyridine)

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 11, Issue 16, Pages 4751-4757

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.200500398

Keywords

acylation; density functional calculations; dimethylaminopyridine; kinetics; nucleophilic catalysis

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The acetylation of tert-butanol with acetic anhydride catalyzed by 4-(dimethylamino)pyridine (DMAP) has been studied at the Becke3LYP/6311+G(d,p)//Becke3LYP/6-3IG(d) level of theory. Solvent effects have been estimated through single-point calculations with the PCM/UAHF solvation model. The energetically most favorable pathway proceeds through nucleophilic attack of DMAP at the anhydride carbonyl group and subsequent formation of the corresponding acetylpyridinium/acetate ion pair. Resubstrate yields the final product, tert-butylacetate. The competing base-catalyzed reaction pathway can either proceed in a concerted or in a stepwise manner. In both cases the reaction barrier far exceeds that of the nucleophilic catalysis mechanism. The reaction mechanism has also been studied experimentally in dichloromethane through analysis of the reaction kinetics for the acetylation of cyclohexanol with acetic anhydride, in the presence of DMAP as catalyst and triethylamine as the auxiliary base. The reaction is found to be first-order with respect to acetic anhydride, cyclohexanol, and DMAP, and zero-order with respect to triethyl amine. Both the theoretical as well as the experimental studies strongly support the nucleophilic catalysis pathway.

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