An Adiabatic Capture Theory and Quasiclassical Trajectory Study of C + NO and O + CN on the 2 A', 2 A", and 4 A" Potential Energy Surfaces
Date
Authors
Frankcombe, Terry
Andersson, Stefan
Journal Title
Journal ISSN
Volume Title
Publisher
American Chemical Society
Abstract
The adiabatic capture centrifugal sudden approximation (ACCSA) has been applied to the C + NO and O + CN reactions, along with quasiclassical trajectory simulations. Existing global analytic fits to the potential energy surfaces of the CNO system in the2A′,2A″, and4A″ electronic states have been used. Thermal rate constants for reaction in each of the electronic states have been calculated. In all cases a strong temperature dependence is evident in the calculated rate constants. The agreement between the calculated adiabatic capture and quasiclassical trajectory rate constants is excellent in some cases, but these rate constants differ considerably in other cases. This behavior is analyzed in terms of the anisotropy of the potential energy surfaces. On the basis of this analysis, we propose a new diagnostic for the reliability of ACCSA capture calculations.
Description
Citation
Collections
Source
Journal of Physical Chemistry A
Type
Book Title
Entity type
Access Statement
License Rights
Restricted until
2037-12-31