Effect of Phase on Hot Hydrogen Atom Abstraction Reaction with Solid Isobutane as Studied by Electron Spin Resonance Spectroscopy
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/44/10/44_10_2619/_pdf
Reference26 articles.
1. Hot Atom Chemistry
2. Recoil Tritium Reactions: Pressure-dependent Reactions with Cyclobutane
3. The Kinetics of Hot Deuterium Atoms in the Photolysis of Deuterium Iodide1,2
4. Reactions of Photochemically Produced Hot Hydrogen Atoms. II. Reaction and Moderation Probabilities for 3‐eV H Atoms in D2, CD4, and C2D6 and for 3‐eV D Atoms in H2, CH4, and C2H6
5. Radical Formation by the Photolysis of Hydrogen Iodide at 77°K. in Alkane, Alkane—Alkene, and Alkene Matrices1
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1. Catalytic oxidation of hydrocarbons over Co3O4 catalyst prepared by CVD;Catalysis Communications;2009-10
2. Energy, phase, and temperature effects on hydrogen atom abstraction reaction from isobutane by hydrogen atoms at 4 and 77 K;The Journal of Physical Chemistry;1981-03
3. Isotope effects on selective hydrogen atom abstraction by H atoms in λ-radiolysis and UV-photolysis of neopentane-alkane mixtures at 77 K;Radiation Physics and Chemistry (1977);1980-01
4. Selective Hydrogen Atom Abstraction by H Atoms in Radiolysis and Photolysis at 77 K: Decane-d22, Tetramethylsilane, and Xenon Matrices;Bulletin of the Chemical Society of Japan;1978-06
5. Effect of irradiation temperatures on hydrogen atom reactions in neopentane and its mixtures irradiated at 4.2 and 77 K as studied by electron spin resonance;The Journal of Physical Chemistry;1977-07
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