Formation of Pyridyl Radicals by Hydrogen Atom Abstraction: Theoretical Study
Author:
Publisher
Pleiades Publishing Ltd
Subject
General Physics and Astronomy,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering,General Chemistry
Link
https://link.springer.com/content/pdf/10.1134/S0010508223020016.pdf
Reference9 articles.
1. T. J. Houser, M. E. McCarville, and T. Biftu, “Kinetics of the Thermal Decomposition of Pyridine in a Flow System," Int. J. Chem. Kinet. 12 (8), 555–568 (1980); DOI: 10.1002/kin.550120806.
2. T. J. Houser, M. Hull, R. M. Alway, and T. Biftu, “Kinetics of Formation of HCN during Pyridine Pyrolysis," Int. J. Chem. Kinet. 12 (8), 569–574 (1980); DOI: 10.1002/kin.550120807.
3. O. S. Bruinsma, P. J. J. Tromp, H. J. J. de Sauvage Nolting, and J. A. Moulijn, “Gas Phase Pyrolysis of Coal-Related Aromatic Compounds in a Coiled Tube Flow Reactor: 2. Heterocyclic Compounds, Their Benzo and Dibenzo Derivatives," Fuel 67 (3), 334–340 (1988); DOI: 10.1016/0016-2361(88)90315-8.
4. J. C. Mackie, M. B. Colket, and P. F. Nelson, “Shock Tube Pyrolysis of Pyridine," J. Phys. Chem. 94 (10), 4099–4106 (1990); DOI: 10.1021/j100373a040.
5. E. Ikeda and J. C. Mackie, “Thermal Decomposition of Two Coal Model Compounds—Pyridine and 2-picoline. Kinetics and Product Distributions," J. Anal. Appl. Pyrol. 34 (1), 47–63 (1995); DOI: 10.1016/0165-2370(94)00873-Y.
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