The kinetics and mechanism of the aminolysis of S-phenyl cyclopropanecarboxylates [cyclo-C3H5C(O)SC6H4Z] with benzylamines (XC6H4CH2NH2) were investigated in acetonitrile at 35.0 °C. The large magnitudes of the Brönsted coefficients βX
(1.7–2.3) and βZ
(−0.9 to −1.3), together with a large positive cross-interaction constant ρXZ = +1.4, are interpreted to indicate a stepwise mechanism with rate-limiting breakdown of the zwitterionic tetrahedral intermediate, T±. The proposed mechanism is supported by adherence of the rates to the reactivity-selectivity principle (RSP). The kinetic isotope effects involving deuterated benzylamines (XC6H4CH2ND2) are greater than unity (kH/kD > 1.0), suggesting the possibility of a hydrogen-bonded four-center transition state. The activation parameters, ΔH≠
(≅5 kcal mol−1) and ΔS≠
(=−45 to −54 e.u.), are consistent with this transition state structure.
You have access to this article
Please wait while we load your content...
Something went wrong. Try again?