Electron Spin Exchange in Aqueous Solutions of K2(SO3)2NO
- 15 June 1963
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 38 (12) , 2892-2895
- https://doi.org/10.1063/1.1733617
Abstract
The electron spin exchange frequency of potassium peroxylamine disulfonate as a function of concentration has been studied by electron spin resonance techniques. The exchange frequencies have been calculated from measurements of the linewidths and the line separations using the modified Bloch equations. The frequencies thus obtained are in agreement with each other. The functional dependence of exchange frequency upon concentration can be expressed as ω=bCm, where m is of the order of unity. The effect of molecular oxygen upon the spin exchange measurements is described. The resonance line shape has been found to deviate from Lorentzian at low concentrations.Keywords
This publication has 15 references indexed in Scilit:
- A PROTON MAGNETIC RESONANCE STUDY OF HINDERED INTERNAL ROTATION IN SOME SUBSTITUTED N,N-DIMETHYLAMIDES1The Journal of Physical Chemistry, 1962
- A Thermal Motion Effect in the Electron Spin Resonance of a Free Radical in SolutionProceedings of the Physical Society, 1961
- Protonation of Amides1Journal of the American Chemical Society, 1960
- Anomalous Loss of Resolution of Paramagnetic Resonance Hyperfine Structure in LiquidsPhysical Review Letters, 1959
- A General Theory of Magnetic Resonance AbsorptionJournal of the Physics Society Japan, 1954
- A Mathematical Model for the Narrowing of Spectral Lines by Exchange or MotionJournal of the Physics Society Japan, 1954
- Spin Relaxation in Free Radical Solutions Exhibiting Hyperfine StructurePhysical Review B, 1954
- Dissociation, Chemical Exchange, and the Proton Magnetic Resonance in Some Aqueous ElectrolytesThe Journal of Chemical Physics, 1953
- Decomposition of Nitrosyl Disulfonate Ion. I. Products and Mechanism of Color Fading in Acid Solution1,2Journal of the American Chemical Society, 1952
- Hyperfine Structure in the Paramagnetic Resonance of the Ion NPhysical Review B, 1952