Fj. Aoiz et al., Quantum mechanical and quasi-classical rate constant calculations for the O(P-3)+HCl -> OH+Cl reaction, PCCP PHYS C, 1(6), 1999, pp. 1149-1158
Quantum mechanical (QM) and quasi-classical trajectory (QCT) rate constant
calculations for the O(P-3) + HCI(upsilon = 0-2) --> OH + Cl reactions have
been carried out on the ab initio potential energy surface (PES) by Koizum
i et al. (J. Chem. Phys., 1991, 95, 6421). For the reaction of O(P-3) with
HCl(upsilon = 0), the QM cumulative reaction probability for total angular
momentum J = 0 was evaluated and the thermal rate constants calculated usin
g the J-shifting approximation. The QM results are in close agreement with
those obtained by Thompson and Miller (J. Chem. Phys., 1997, 106, 142; 107,
2164E) and seem to overestimate slightly the experimental determinations.
In contrast, the QCT rate constants Clearly underestimate the experimental
rate coefficients, indicating that tunneling is important at low collision
energies. The QCT rate constant calculations for the reaction with HCl(upsi
lon = 1, 2) show a. significant enhancement of reactivity with reagent vibr
ational excitation, in agreement with the experimental observations. For th
e O(P-3) + HCl(upsilon = 2, j = 1, 6, 9) reactions, the rovibrational popul
ations of the OH product were determined from QCT calculations and a qualit
ative agreement was found with the existing experimental results and with t
hose obtained previously from QCT calculations on a different ab initio PES
.