Products from the Oxidation of n-Butane from 298 to 735 K Using Either Cl Atom or Thermal Initiation: Formation of Acetone and Acetic Acid—Possible Roaming Reactions?
Author:
Affiliation:
1. Department of Natural Sciences, University of Michigan—Dearborn, 4901 Evergreen Road, Dearborn, Michigan 48128, United States,
2. Research and Advanced Engineering, Ford Motor Company, Dearborn, Michigan 48121-2053, United States
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.jpca.7b06608
Reference39 articles.
1. Detailed product analysis during the low temperature oxidation of n-butane
2. Synchrotron Photoionization Mass Spectrometry Measurements of Product Formation in Low-Temperature n-Butane Oxidation: Toward a Fundamental Understanding of Autoignition Chemistry and n-C4H9 + O2/s-C4H9 + O2 Reactions
3. Addition of n-butane to slowly reacting mixtures of hydrogen and oxygen at 480°C. Part 2.—Formation of oxygenated products
4. Products and Mechanism of the Reaction of Cl with Butanone in N2/O2 Diluent at 297−526 K
5. Study of the Thermodynamics (Thermal and Cl Catalyzed) and Kinetics of the Cis and Trans Isomerizations of CF3CF═CHF, CF3CH═CHCF3, and CH3CH═CHCH3 in 100–950 Torr of N2 Diluent at 296–875 K: Effect of F and CF3 Substitution on the Isomerization Process Including the Fluorine “Cis Effect”
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