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Physical Chemistry Chemical Physics : PCCP|October 1, 2009
Temperature and pressure dependence of ion-molecule association and dissociation reactions: the N2(+) + N2 (+ M) <--> N4+ (+ M) reactionJürgen TroeThe Journal of Physical Chemistry. A|January 26, 2012
Refined representation of falloff curves for the reaction HO + NO2 + N2 → (HONO2, HOONO) + N2Jürgen TroeThe Journal of Physical Chemistry. A|January 12, 2019
Simplified Analysis and Representation of Multichannel Thermal Unimolecular ReactionsJürgen TroeThe Journal of Physical Chemistry. A|January 30, 2007
Classical trajectory study of the reaction between H and HCOJürgen Troe, Vladimir UshakovThe Journal of Physical Chemistry. B|October 6, 2006
Intramolecular hydrogen bonding in 1,8-dihydroxyanthraquinone, 1-aminoanthraquinone, and 9-hydroxyphenalenone studied by picosecond time-resolved fluorescence spectroscopy in a supersonic jetChristian Müller, Jörg Schroeder, Jürgen TroePhysical Chemistry Chemical Physics : PCCP|September 29, 2005
The role of the radical-complex mechanism in the ozone recombination/dissociation reactionKlaus Luther, Kawon Oum, Jürgen TroeThe Journal of Physical Chemistry. A|February 12, 2015
Temperature and Pressure Dependence of the Reaction S + CS (+M) → CS2 (+M)Peter Glarborg, Paul Marshall, Jürgen TroeJournal of the American Society for Mass Spectrometry|May 30, 2019
On the Competition Between Electron Autodetachment and Dissociation of Molecular AnionsGerd Marowsky, Jürgen Troe, Albert A ViggianoThe Journal of Physical Chemistry. A|March 31, 2006
Falloff curves for the Reaction CH3 + O2 (+ M) --> CH3O2 (+ M) in the pressure range 2-1000 bar and the temperature range 300-700 KRavi X Fernandes, Klaus Luther, Jürgen TroeThe Journal of Physical Chemistry. A|June 29, 2010
Contribution of the radical-complex mechanism to the rate of the reaction CH(3) + O(2) (+ M) → CH(3)O(2) (+ M) at high pressuresRavi X Fernandes, Klaus Luther, Jürgen TroePageof 5