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Level crossing resonance due to chlorine nuclei in a free radical
Authors:Feng Ji  Paul W. Percival  Jean-Claude Brodovitch  Brenda Addison-Jones  Stanislaw Wlodek
Affiliation:(1) Chemistry Department, Simon Fraser University, V5A 1S6 Burnaby, B.C., Canada;(2) Present address: Dept. of Chemistry, Univ. of Houston, 77204-5641 Houston, TX, USA
Abstract:Muonium adds to allyl chloride, CH2=CHCH2Cl, to form two radicals: MuCH2CHCH2Cl (main product) and CH2CHMuCH2Cl (minor product). Both radicals were fully characterized bymgrSR andmgrLCR. In the main product, the LCR lines due to the35Cl and37Cl nuclei were observed. Also, the temperature dependence of various hyperfine coupling constants (hfc) indicates that both Mu and Cl eclipse the unpaired electronp2-orbital in the minimum energy conformation. For the fragment-CH2Cl, the presence of Mu in thebetaprime-position is found to affect significantly the hfc of Cl in thebeta-position; an internal rotational barrier of 12 kJ mol–1 was estimated using a simpleV2 torsional potential.
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