Stabilization and isomerization of radical cations generated by fast electron irradiation of unsaturated organic molecules in a solid argon matrix

Matrix isolation EPR spectroscopy was used to study the fate of “hot” unsaturated radical cations produced by fast electron irradiation in solid argon. It was found that the radical cations of cis-2-butene, trans-2-butene and ethyl vinyl ether resulting from highly exothermic hole transfer (excess e...

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Veröffentlicht in:Radiation physics and chemistry (Oxford, England : 1993) England : 1993), 2006, Vol.75 (1), p.106-114
Hauptverfasser: Feldman, V.I., Sukhov, F.F., Orlov, A.Yu, Tyulpina, I.V., Ivanchenko, V.K.
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container_title Radiation physics and chemistry (Oxford, England : 1993)
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creator Feldman, V.I.
Sukhov, F.F.
Orlov, A.Yu
Tyulpina, I.V.
Ivanchenko, V.K.
description Matrix isolation EPR spectroscopy was used to study the fate of “hot” unsaturated radical cations produced by fast electron irradiation in solid argon. It was found that the radical cations of cis-2-butene, trans-2-butene and ethyl vinyl ether resulting from highly exothermic hole transfer (excess energy>6 eV) underwent effective relaxation in an argon matrix. 1-Butene radical cation exhibits isomerization to cis-2-butene radical cation. The role of molecular structure of organic radical cations in excess energy relaxation is discussed.
doi_str_mv 10.1016/j.radphyschem.2005.03.012
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subjects EPR
Excess energy
Matrix isolation
Radical cations
Unsaturated compounds
title Stabilization and isomerization of radical cations generated by fast electron irradiation of unsaturated organic molecules in a solid argon matrix
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