The kinetics of the reaction of molecular oxygen with hydroperoxyalkyl radicals have been studied theoretically. These reactions, often referred to as second O2 addition, or O2 + QOOH reactions, are believed to be responsible for low-temperature chain branching in hydrocarbon oxidation. The O2 + propyl system was chosen as a model system. High-level ab initio calculations of the C3H7O2 and C3H7O4 potential energy surfaces are coupled with RRKM master equation methods to compute the temperature and pressure dependence of the rate coefficients. Variable reaction coordinate transition-state theory is used to characterize the barrierless transition states for the O2 + QOOH addition reactions as well as subsequent C3H6O3 dissociation reactions. ...
Modeling of low-temperature ethane oxidation requires an accurate description of the reaction of C2H...
This paper presents a computational study on the low-temperature mechanism and kinetics of the react...
The methoxymethyl radical, CH3OCH2, is an important intermediate in the low temperature combustion o...
The kinetics of the reaction of molecular oxygen with hydroperoxyalkyl radicals have been studied th...
The kinetics of the reaction of molecular oxygen with hydroperoxyalkyl radicals have been studied th...
Propane and n-Butane are the smaller and simpler hydrocarbons that already show the different behavi...
The unimolecular reactions of hydroperoxy alkyl radicals (QOOH) play a central role in the low-tempe...
Due to the rapid advance in analytical methods, a large detail of intermediate products from the low...
QOOH radicals are key species in autoignition, produced by internal isomerisations of RO2 radicals, ...
A pressure dependent kinetic mechanism for propane oxidation is developed and compared to experiment...
A pressure dependent kinetic mechanism for propane oxidation is developed and compared to experiment...
In this study of the reaction of alkyl radicals with molecular oxygen, we analyze the propyl + 02 re...
International audienceDue to its importance for engine development, the chemistry related to the low...
We carried out a theoretical study on geometries, relative energies of stationary points, and reacti...
Author Institution: York University; Wilfrid Laurier UniversityIsomerization of peroxyl radicals ROO...
Modeling of low-temperature ethane oxidation requires an accurate description of the reaction of C2H...
This paper presents a computational study on the low-temperature mechanism and kinetics of the react...
The methoxymethyl radical, CH3OCH2, is an important intermediate in the low temperature combustion o...
The kinetics of the reaction of molecular oxygen with hydroperoxyalkyl radicals have been studied th...
The kinetics of the reaction of molecular oxygen with hydroperoxyalkyl radicals have been studied th...
Propane and n-Butane are the smaller and simpler hydrocarbons that already show the different behavi...
The unimolecular reactions of hydroperoxy alkyl radicals (QOOH) play a central role in the low-tempe...
Due to the rapid advance in analytical methods, a large detail of intermediate products from the low...
QOOH radicals are key species in autoignition, produced by internal isomerisations of RO2 radicals, ...
A pressure dependent kinetic mechanism for propane oxidation is developed and compared to experiment...
A pressure dependent kinetic mechanism for propane oxidation is developed and compared to experiment...
In this study of the reaction of alkyl radicals with molecular oxygen, we analyze the propyl + 02 re...
International audienceDue to its importance for engine development, the chemistry related to the low...
We carried out a theoretical study on geometries, relative energies of stationary points, and reacti...
Author Institution: York University; Wilfrid Laurier UniversityIsomerization of peroxyl radicals ROO...
Modeling of low-temperature ethane oxidation requires an accurate description of the reaction of C2H...
This paper presents a computational study on the low-temperature mechanism and kinetics of the react...
The methoxymethyl radical, CH3OCH2, is an important intermediate in the low temperature combustion o...