Kinetic Parameters for Direct Atomic Substitution Reactions
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- Type
- article
- Published
- 2003-01-01
- Cited by
- 11
- References
- 10
- OpenAlex
- https://openalex.org/W6837909
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92244521
Keywords
Chemistry, Activation energy, Deuterium, Reaction rate constant, Catalysis
References
- Thermal F/X atomic substitution reactions with methyl halides (X = Cl, Br, I)
- Isotope Effects on Reaction Rates
- The chemistry of free radicals
- ESR Study of the Kinetics of the Reactions of D Atoms and O Atoms with NH3
- Atomic and Free Radical Reactions.
- Evaluated Kinetic Data for Combustion Modelling
- Summary table of evaluated kinetic data for combustion modeling: Supplement 1
- Chemical Kinetic Data Base for Combustion Chemistry. Part I. Methane and Related Compounds
- Basic chemical kinetics
- The Theory Of Rate Processes
Cited by
- Theoretical kinetic study of the CH3Br + OH atmospheric system
- How to reach 100% selectivity in H2O2-based oxidation of 2,3,6-trimethylphenol to trimethyl-p-benzoquinone over Ti,Si-catalysts
- Carbon Nanostructure Reactivity: Reactions of Graphite Powders with Ozone
- Copolymerization of propylene with 1-butene and 1-pentene with the isospecific catalytic system rac-Me2Si(4-Ph-2-MeInd)2ZrCl2-MAO
- Theoretical studies on the substitution reactions CH3X+H→CH4+X (X=F, Cl, Br)
- New routes to Vitamin K3
- The substitution reactions RH + O2 → RO2 + H: transition state theory calculations based on the ab initio and DFT potential energy surface
- Highly Selective Oxidation of Alkylphenols to Benzoquinones with Hydrogen Peroxide over Silica-Supported Titanium Catalysts: Titanium Cluster Site versus Titanium Single Site
- Titanium-monosubstituted polyoxometalates: relation between homogeneous and heterogeneous Ti-single-site-based catalysis
- A Kinetic Mechanism for CF3I Inhibition of Methane-Air Flames
- Aminopolycarboxylate zinc(II) complexes with 1,10-phenanthroline and 2,2′-bipyridyl: kinetic studies in the surfactants solutions systems
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