Rm. Nicoll et al., Quantum mechanical dynamics of hydride transfer in polycyclic hydroxy ketones in the condensed phase, J AM CHEM S, 123(7), 2001, pp. 1459-1463
We have used correlated electronic structure calculations and direct dynami
cs methods, including variational transition state theory with multidimensi
onal semiclassical methods for calculating tunneling probabilities, to pred
ict kinetic isotope effects (KIEs) and activation energies for hydride tran
sfer in a polycyclic hydroxy ketone in the gas phase and aqueous solution.
The need to include tunneling in the calculation of the KIEs has been shown
, and the enhanced tunneling arising from a multidimensional model, compare
d to the one-dimensional Wigner treatment, has been demonstrated. The effec
t of solvent on the multidimensional tunneling contributions to the KIEs is
significant and partly cancels the other contributions of the solvent to t
he KIEs. We also examined structural features on the kinetics for three oth
er polycyclic hydroxy ketones by using conventional transition state theory
and a Wigner tunneling approximation.