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The Journal of Chemical Physics|January 26, 2010
State resolved measurements of a (1)CH(2) removal confirm predictions of the gateway model for electronic quenchingK L Gannon, M A Blitz, T Kovács, et al.The Journal of Physical Chemistry. A|March 28, 2014
Low temperature kinetics of the CH3OH + OH reactionJ C Gómez Martín, R L Caravan, M A Blitz, et al.The Journal of Physical Chemistry. A|August 22, 2008
Kinetics and product branching ratios of the reaction of (1)CH2 with H2 and D2K L Gannon, M A Blitz, M J Pilling, et al.The Journal of Physical Chemistry. A|August 14, 2010
Temperature dependent kinetics (195-798 K) and H atom yields (298-498 K) from reactions of (1)CH(2) with acetylene, ethene, and propeneK L Gannon, M A Blitz, C H Liang, et al.The Journal of Physical Chemistry. A|March 17, 2015
Global Uncertainty Propagation and Sensitivity Analysis in the CH3OCH2 + O2 System: Combining Experiment and Theory To Constrain Key Rate Coefficients in DME CombustionR J Shannon, A S Tomlin, S H Robertson, et al.Physical Chemistry Chemical Physics : PCCP|August 15, 2013
On the mechanism of iodine oxide particle formationJ C Gómez Martín, O Gálvez, M T Baeza-Romero, et al.The Journal of Physical Chemistry. A|September 25, 2013
Gas-phase reactions of OH with methyl amines in the presence or absence of molecular oxygen. An experimental and theoretical studyL Onel, L Thonger, M A Blitz, et al.Physical Chemistry Chemical Physics : PCCP|August 18, 2018
Kinetic studies of C<sub>1</sub> and C<sub>2</sub> Criegee intermediates with SO<sub>2</sub> using laser flash photolysis coupled with photoionization mass spectrometry and time resolved UV absorption spectroscopyN U M Howes, Z S Mir, M A Blitz, et al.The Journal of Physical Chemistry. A|May 21, 2015
Reanalysis of Rate Data for the Reaction CH3 + CH3 → C2H6 Using Revised Cross Sections and a Linearized Second-Order Master EquationM A Blitz, N J B Green, R J Shannon, et al.The Journal of Physical Chemistry. A|July 29, 2014
Analysis of the kinetics and yields of OH radical production from the CH3OCH2 + O2 reaction in the temperature range 195-650 K: an experimental and computational studyA J Eskola, S A Carr, R J Shannon, et al.Pageof 3