1982Bulletin of the Chemical Society of JapanRequires access

Kinetic Studies of Spin Trapping Reactions. III. Rate Constants for Spin Trapping of the Cyclohexyl Radical

Takahisa Doba, Hiroshi Yoshida

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Abstract

Abstract In order to give a quantitative basis for the spin trapping technique, the spin trapping rate constants for the reactions between commonly-used spin traps and cyclohexyl radicals have been determined. The cyclohexyl radicals were generated by γ-irradiating cyclohexane solutions of the spin traps. The rate constants for nitrosobenzene, nitrosodurene, pentamethylnitrosobenzene, 2,4,6-tri-t-butylnitrosobenzene, and α-phenyl-N-t-butylnitrone at 299 K are 9×107, 1.4×107, 1.6×107, 2.4×104, and 8×103 mol−1 dm3 s−1, respectively. The results are qualitatively in accordance with previous data for t-butyl, 1-methyl-5-hexenyl radicals.

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Abstract In order to give a quantitative basis for the spin trapping technique, the spin trapping rate constants for the reactions between commonly-used spin traps and cyclohexyl radicals have been determined. The cyclohexyl radicals were generated by γ-irradiating cyclohexane solutions of the spin traps. The rate constants for nitrosobenzene, nitrosodurene, pentamethylnitrosobenzene, 2,4,6-tri-t-butylnitrosobenzene, and α-phenyl-N-t-butylnitrone at 299 K are 9×107, 1.4×107, 1.6×107, 2.4×104, and 8×103 mol−1 dm3 s−1, respectively. The results are qualitatively in accordance with previous data for t-butyl, 1-methyl-5-hexenyl radicals.

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Available abstract

Abstract In order to give a quantitative basis for the spin trapping technique, the spin trapping rate constants for the reactions between commonly-used spin traps and cyclohexyl radicals have been determined. The cyclohexyl radicals were generated by γ-irradiating cyclohexane solutions of the spin traps. The rate constants for nitrosobenzene, nitrosodurene, pentamethylnitrosobenzene, 2,4,6-tri-t-butylnitrosobenzene, and α-phenyl-N-t-butylnitrone at 299 K are 9×107, 1.4×107, 1.6×107, 2.4×104, and 8×103 mol−1 dm3 s−1, respectively. The results are qualitatively in accordance with previous data for t-butyl, 1-methyl-5-hexenyl radicals.

Key concepts: Chemistry, Trapping, Spin trapping, Kinetic energy, Reaction rate constant, Spin (aerodynamics), Photochemistry, Computational chemistry

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