Issue 11, 2000

Kinetics and mechanism of the aminolysis of aryl phenyldithioacetates in acetonitrile

Abstract

The aminolysis reactions of Z-aryl phenyldithioacetates (C6H5CH2C([double bond, length half m-dash]S)SC6H4Z) with benzylamines (XC6H4CH2NH2) are investigated in acetonitrile at −25.0 °C. The reactions are predicted to proceed by a stepwise mechanism with rate-limiting expulsion of the thiophenolate anion from the zwitterionic tetrahedral intermediate, T±, based on (i) large magnitudes of selectivity parameters, βX (ρX) and βZ (ρZ), (ii) positive and large cross-interaction constants ρXZ (=2.05), and (iii) adherence to the reactivity–selectivity principle. The significant normal kinetic isotope effects (kH/kD = 1.14–1.81) involving deuterated amines and low activation enthalpies (ΔH  ≈ 3 kcal mol−1) together with large negative activation entropies (ΔS  = −37 to −53 e.u.) are consistent with concurrent proton transfer of amine hydrogen with the leaving group departure in the transition state.

Article information

Article type
Paper
Submitted
10 Apr 2000
Accepted
21 Aug 2000
First published
16 Oct 2000

J. Chem. Soc., Perkin Trans. 2, 2000, 2306-2310

Kinetics and mechanism of the aminolysis of aryl phenyldithioacetates in acetonitrile

H. K. Oh, S. K. Kim, I. H. Cho, H. W. Lee and I. Lee, J. Chem. Soc., Perkin Trans. 2, 2000, 2306 DOI: 10.1039/B002842H

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