The E.S.R. spectrum of irradiated ammonium hypophosphite
- 1 May 1962
- journal article
- research article
- Published by Taylor & Francis in Molecular Physics
- Vol. 5 (3) , 217-223
- https://doi.org/10.1080/00268976200100231
Abstract
Electron spin resonance spectra of irradiated crystals of ammonium hypophosphite (NH4)+(H2PO2)- indicate that the ionic radical H[Pdot]O2 - is initially formed. The hyperfine interaction tensor of the phosphorus nucleus has the principal values 1698, 1228 and 1228 Mc/s. Interaction with the proton gives rise to an almost isotropic hyperfine coupling of 230 Mc/s. These results indicate that the species H[Pdot]O2 - is irregular tetrahedral in shape, the unpaired electron occupying a hybrid σ orbital centred on the phosphorus nucleus. There is evidence that the radical H[Pdot]O2 - reacts with an adjacent H2PO2 - ion forming the species O2[Pdot]-PHO2 =. The principal values of the hyperfine interaction tensors of the two phosphorus nuclei are 1365, 944, 921 Mc/s and 527, 362, 359 Mc/s respectively. The proton has an isotropic hyperfine coupling of 90 Mc/s. The spectra of irradiated deuterated crystals confirmed this analysis.Keywords
This publication has 11 references indexed in Scilit:
- The electron spin resonance spectra of CH(SO3)2=and N(SO3)2=Molecular Physics, 1962
- The optical and electron resonance spectra of SO3-Molecular Physics, 1962
- Electron spin resonance and structure of the ionic radical, ·PO3=Molecular Physics, 1961
- Paramagnetic Defects in Irradiated NH4ClO4The Journal of Chemical Physics, 1961
- Automatic method of magnetic field calibration using proton resonanceJournal of Scientific Instruments, 1961
- Analytic Hartree-Fock Wave Functions for the-Shell AtomsPhysical Review B, 1961
- Radiation Damage in Organic Crystals. I. CH(COOH)2 in Malonic Acid1Journal of the American Chemical Society, 1960
- Theory of anisotropic hyperfine interactions inπ-electron radicalsMolecular Physics, 1959
- Determination of-Values in Paramagnetic Organic Compounds by Microwave ResonancePhysical Review B, 1950
- The Structure of the Hypophosphite Group as Determined from the Crystal Lattice of Ammonium HypophosphiteThe Journal of Chemical Physics, 1934