A direct kinetics study of the temperature dependence of the CH2O branching channel for the CH3O2 + HO2 reaction has been performed using the turbulent flow technique with high-pressure chemical ionization mass spectrometry for the detection of reactants and products. The temperature dependence of the CH2O-producing channel rate constant was investigated between 298 and 218 K at a pressure of 100 Torr, and the data were fitted to the following Arrhenius expression: 1.6−0.7+1.0 × 10−15 × exp[(1730 ± 130)/T]; cm3 molecule−1 s−1. Using the Arrhenius expression for the overall rate of the CH3O2 + HO2 reaction and this result, the 298 K branching ratio for the CH2O producing channel is measured to be 0.11, and the branching ratio is calculated t...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
The reaction between HO2 and CH3C(O)O-2 has three exothermic product channels, forming OH (R3a), per...
The reaction between HO2 and CH3C(O)O-2 has three exothermic product channels, forming OH (R3a), per...
The temperature dependence of the overall rate constant for the C3H7O2 + NO reaction and the rate co...
The temperature dependence of the overall rate constant for the C3H7O2 + NO reaction and the rate co...
The temperature dependence of the overall rate constant for the C3H7O2 + NO reaction and the rate co...
The overall rate constant and branching ratio for the OH + ClO reaction have been measured using the...
The HO2 + CH3C(O)O2 reaction consists of three product channels: CH3C(O)OOH + O2 (R1a), CH3C(O)...
The temperature dependence of the overall rate constant for the C2H5O2 + NO reaction and the rate co...
The rate constant for the HO2 + BrO reaction has been measured using the turbulent flow technique wi...
The rate constant for the reaction HO2 + NO → OH + NO2 has been measured using the turbulent flow te...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
The rate constant for the reaction HO2 + NO → OH + NO2 has been measured using the turbulent flow te...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
The reaction between HO2 and CH3C(O)O-2 has three exothermic product channels, forming OH (R3a), per...
The reaction between HO2 and CH3C(O)O-2 has three exothermic product channels, forming OH (R3a), per...
The temperature dependence of the overall rate constant for the C3H7O2 + NO reaction and the rate co...
The temperature dependence of the overall rate constant for the C3H7O2 + NO reaction and the rate co...
The temperature dependence of the overall rate constant for the C3H7O2 + NO reaction and the rate co...
The overall rate constant and branching ratio for the OH + ClO reaction have been measured using the...
The HO2 + CH3C(O)O2 reaction consists of three product channels: CH3C(O)OOH + O2 (R1a), CH3C(O)...
The temperature dependence of the overall rate constant for the C2H5O2 + NO reaction and the rate co...
The rate constant for the HO2 + BrO reaction has been measured using the turbulent flow technique wi...
The rate constant for the reaction HO2 + NO → OH + NO2 has been measured using the turbulent flow te...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
The rate constant for the reaction HO2 + NO → OH + NO2 has been measured using the turbulent flow te...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...
A high-pressure turbulent flow reactor coupled with a chemical ionization mass-spectrometer was used...