A Comparison of Primary and Secondary Hydrogen Abstraction from Organophosphates by Hydroxyl Radical

作者:Burns Douglas S*; Cory Marshall G; Taylor Decarlos E; Bunte Steven W; Runge Keith; Vasey Joseph L
来源:International Journal of Chemical Kinetics, 2013, 45(3): 187-201.
DOI:10.1002/kin.20755

摘要

To compare the effect of primary and secondary C?H bonds on hydrogen?atom abstraction by hydroxyl radical, rate constants for the reactions of OH radicals with trimethyl phosphate [TMPO, (CH3O)3P(O)] and triethyl phosphate [TEPO, (CH3CH2O)3P(O)] have been calculated using the semiclassical fluxflux autocorrelation SCFFAF) method and compared with experimental measurements over the temperature range 250350K. SCFFAF specifies that structures be obtained at the CCSD/6?31++G** level of chemical theory and the height of the activation barrier be determined using an energy extrapolation, here a variant of the G2MP2 method. Dynamics are generated in the SCFFAF method from forces computed with a transfer Hamiltonian, which provides information about the curvature of the potential energy surface in the neighborhood of the transition state (TS), as well as the required internal forces. The temperature?dependent reaction rate constants are calculated for the various possible abstraction pathways, primary hydrogen atom abstraction in the case of TMPO, and primary and secondary in the case of TEPO. Since two energetically favorable parent structures for each system are included in the model, the activation energy is calculated with respect to the conformer that connects to a given TS and the total rate constant at a given temperature is Boltzmann weighted with respect to the parent conformer. The computed temperature?dependent rate curves are consistent with published experimental data in both magnitude and temperature dependence.

  • 出版日期2013-3