High pressure range of addition reactions of HO. II. Temperature and pressure dependence of the reaction HO+CO⇔HOCO→H+CO2
- 15 July 1996
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 105 (3) , 983-1000
- https://doi.org/10.1063/1.471991
Abstract
Thermal rate constants of the complex‐forming bimolecular reaction HO+CO■HOCO→H+CO2 were measured between 90 and 830 K in the bath gas He over the pressure range 1–700 bar. In addition, the vibrational relaxation of HO in collisions with CO was studied between 300 and 800 K. HO was generated by laser photolysis and monitored by saturated laser‐induced fluorescence. The derived second‐order rate coefficients showed a pronounced pressure and complicated non‐Arrhenius temperature dependence. Above 650 K, the disappearance of HO followed a biexponential time law, indicating thermal instability of collisionally stabilized HOCO. By analyzing the corresponding results, an enthalpy of formation of HOCO of ΔHof,0=−(205±10) kJ mol−1 was derived. On the basis of energy‐ and angular‐momentum‐dependent rates of HOCO formation, activated complex properties for the addition reaction HO+CO→HOCO were derived from the limiting high‐pressure rate constants; with the limiting low‐pressure rate constants, activated complex properties for the dissociation HOCO→H+CO2 could be fitted as well. The observed transitions between low‐ and high‐pressure limiting rate constants were well reproduced with these molecular parameters and collisional contributions; some evidence for rotational effects in collisional energy transfer was found. The surprisingly successful theoretical modeling of all available experimental data (80–2800 K, 0.0001–700 bar) allows for a satisfactory data representation of the rate coefficients over very wide ranges of conditions.Keywords
This publication has 75 references indexed in Scilit:
- A study of HOCO resonances in the OH+CO→CO2+H reactionThe Journal of Chemical Physics, 1994
- A quasiclassical trajectory study of OH rotational excitation in OH+CO collisions using a b i n i t i o potential surfacesThe Journal of Chemical Physics, 1992
- A quasiclassical trajectory study of the OH+CO reactionThe Journal of Chemical Physics, 1991
- Chemical reactions and lasers: Elementary steps and complex systemsSpectrochimica Acta Part A: Molecular Spectroscopy, 1990
- Photoinitiated reactions in weakly bonded complexesAccounts of Chemical Research, 1988
- Theoretical characterization of the minimum energy path for the reaction H+O2→HO2*→HO+OThe Journal of Chemical Physics, 1988
- A theoretical study of the potential energy surface for the reaction OH+CO→CO2+HThe Journal of Chemical Physics, 1988
- Real-time picosecond clocking of the collision complex in a bimolecular reaction: The birth of OH from H+CO2The Journal of Chemical Physics, 1987
- Specific rate constants k(E,J) for the unimolecular dissociations of formaldehyde and formaldehyde-d2The Journal of Physical Chemistry, 1984
- A flasch photolysis–resonance fluorescence study of the formation of O(1D) in the photolysis of water and the reaction of O(1D) with H2, Ar, and He −The Journal of Chemical Physics, 1975