A theoretical comparison of primary deuterium kinetic isotope effects in analogous hydride and hydron transfer processes
Abstract
The semiclassical primary deuterium kinetic isotope effect (3.30 at 298 K) for symmetrical hydride transfer from HNCH2 to HC
NH+, computed at the HF/3–21G level of ab initio molecular orbital (MO) theory, is smaller than that for analogous proton transfer from HN
CH2 to –HC
NH (4.38) owing to extensive participation in the reaction-coordinate vibrational mode of degrees of freedom other than asymmetric C ⋯ H stretching.