Published August 5, 1987 | Version v1
Journal article

Parallel behavior in kinetic and NMR effects: secondary deuterium isotope effects on the alkaline hydrolysis of esters

Description

β-Deuterium secondary kinetic isotope effects (β-D KIEs) on the alkaline hydrolysis of the p-nitrophenyl esters of acetic, propanoic, butanoic, and pentanoic acids in pH 10.70, 0.20 M carbonate buffer at 250C tend to increase with increasing chain length of the esters up to the pentanoate. The β-D KIEs are respectively 0.975 +/- 0.004, 0.960 +/- 0.002, 0.940 +/- 0.001, and 0.948 +/- 0.004. The activation energies of the esterolyses of the isotopically light esters follow a similar pattern, as do the 13C NMR nuclear shieldings in CDCl3 of the isotopically light parent carboxylic acids (20.9, 27.4, 35.9, and 33.8 (ppm)) and 13C NMR one-bond isotope shifts produced by disubstitution of deuterium for hydrogen at the α-carbons of the acids (0.45, 0.55, 0.60, and 0.59 (ppm)). Correlation of nuclear shieldings and isotope shifts is known from previous work. The possibility is considered that all of the kinetics-based and NMR relationships are linked through the operation of a common ground-state feature of the ester and acid alkyl chains

Additional details

Publishing Information

Journal Title
J. Am. Chem. Soc.
Journal Volume
109
Journal Issue
16
Series
J. Am. Chem. Soc.
Journal Page Range
4916-4918
ISSN
0002-7863
CODEN
JACSA