Selective Hydrogen Atom Abstraction by H Atoms in Radiolysis and Photolysis at 77 K: Decane-d22, Tetramethylsilane, and Xenon Matrices
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/51/6/51_6_1676/_pdf
Reference32 articles.
1. Selective hydrogen atom abstraction by hydrogen atoms in neopentane-alkane mixtures at 77.deg.K
2. Selective hydrogen atom abstraction by hydrogen atoms in photolysis and radiolysis of neopentane-alkane mixtures at 77.deg.K
3. Selective Hydrogen Atom Abstraction by Hydrogen Atoms in Photolysis and Radiolysis of Alkane Mixtures at 77 K
4. Selective Hydrogren Atom Abstraction by Hydrogen Atoms in Photolysis of Cyclohexane-Pentane Mixtures at 77 K
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2. Structure-reactivity relationships in reactions of alkane radical cations;Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy;1998-12
3. Organic Reaction in Cryogenic Solid. Controlling Factors for Hydrogen-Atom Abstraction.;Journal of Synthetic Organic Chemistry, Japan;1995
4. Site Selectivity in the Proton Transfer from Alkane Radical Cations to Alkane Molecules. Donor and Acceptor Site Selectivity in the Proton Transfer from Heptane Radical Cations to Octane Molecules in .gamma.-Irradiated n-C7H16/n-C8D18 and n-C7H16/n-C8H18/1-C6H13Cl Crystals at 77 K;The Journal of Physical Chemistry;1994-06
5. Dependence on electronic structure of the site of proton transfer from alkane radical cations: nature of heptyl radicals formed by proton transfer from heptane radical cations to heptane molecules in trichlorofluoromethane matrixes at 77 K;The Journal of Physical Chemistry;1992-10
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