
Tetrahedron p. 1795 - 1802 (1988)
Update date:2022-08-05
Topics:
Engbersen, J. F. J.
Geurtsen, G.
Bie, D. A. De
Plas, H. C. Van Der
Arylbenzoate esters with a quaternary pyridinium group ortho to the ester function exhibit enhanced reactivity towards basic hydrolysis relative to their para analogs in the order pyridinium < 4-aminocarbonylpyridinium < 3-aminocarbonylpyridinium < 3-aminocarbonylquinolium.In contrast, a trimethylammonium group in the ortho position shows a decelerating effect relative to the para analog.It is concluded that the catalytic effect of a neighboring pyridinium group is based upon interaction of the negatively charged transition state of ester hydrolysis with the electron deficient ?-system of the pyridinium ring.For the p-methoxyphenolate ester containing the 3-aminocarbonylpyridinium group in the ortho position this interaction leads to a change in mechanism from rate limiting hydroxide ion attack to hydroxide ion catalyzed expulsion of the leaving group as became apparent from deviation of the Hammett plot and second-order dependence on OH(1-) concentration.For the p-nitrophenolate ester it was observed that decrease of the solvent polarity by addition of dioxane results in an increase of the rate of hydrolysis and a marked increase of the neighboring group effect.
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Doi:10.1246/bcsj.65.97
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(1988)