Ab initio calculations at the G3 level were used in a theoretical description of the kinetics and mechanism of the chlorine abstraction reactions from mono-, di-, tri- and tetra-chloromethane by chlorine atoms. The calculated profiles of the potential energy surface of the reaction systems show that the mechanism of the studied reactions is complex and the Cl-abstraction proceeds via the formation of intermediate complexes. The multi-step reaction mechanism consists of two elementary steps in the case of CCl4â+âCl, and three for the other reactions. Rate constants were calculated using the theoretical method based on the RRKM theory and the simplified version of the statistical adiabatic channel model. The temperature dependencies of the calculated rate constants can be expressed, in temperature range of 200-3,000 K as [Formula: see text]. The rate constants for the reverse reactions CH3/CH2Cl/CHCl2/CCl3â+âCl2 were calculated via the equilibrium constants derived theoretically. The kinetic equations [Formula: see text] allow a very good description of the reaction kinetics. The derived expressions are a substantial supplement to the kinetic data necessary to describe and model the complex gas-phase reactions of importance in combustion and atmospheric chemistry.
Theoretical study of the kinetics of chlorine atom abstraction from chloromethanes by atomic chlorine.
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作者:Brudnik Katarzyna, Twarda Maria, SarzyÅski Dariusz, Jodkowski Jerzy T
| 期刊: | Journal of Molecular Modeling | 影响因子: | 2.500 |
| 时间: | 2013 | 起止号: | 2013 Oct;19(10):4181-93 |
| doi: | 10.1007/s00894-013-1779-y | ||
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