Electron spin resonance identification of the dimer radical cation (CH3O)3P-P(OCH3)3/+ in γ-irradiated trimethyl phosphite from second-order hyperfine structure
Author:
Publisher
Informa UK Limited
Subject
Physical and Theoretical Chemistry,Condensed Matter Physics,Molecular Biology,Biophysics
Link
http://www.tandfonline.com/doi/pdf/10.1080/00268977400102531
Reference14 articles.
1. Unstable intermediates. Part 117.—Electron spin resonance studies of dimeric (σ*) radicals of type R3X—XR3with a three electron X—X bond, when X is phosphorus or arsenic
2. Electron spin resonance spectrum of radicals in γ-irradiated trimethyl phosphite: P(OMe)4, HP(OMe)3, P(OMe)2, (MeO)3P-P(OMe)3+and H2COP(OMe)2
3. Unstable intermediates. Part CXXXI. An electron spin resonance study of a range of radicals in irradiated phenylphosphonic dichloride and phenylphosphonothionic dichloride
4. Electron spin resonance identification of phosphorus-centred radicals in γ-irradiated dialkyl phosphites
5. Homolytic organometallic reactions. Part IX. An electron spin resonance study of the mechanism of β-scission of tetra-alkoxyphosphoranyl radicals. Formation of trialkoxy(methyl)phosphoranyl radicals
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