Paramagnetic Resonance of Free Radicals at Millimeter Wave Frequencies
- 1 January 1957
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 105 (1) , 50-55
- https://doi.org/10.1103/physrev.105.50
Abstract
Paramagnetic resonance experiments have been made at 36 kMc/sec and at 75 kMc/sec on single crystals and on solid and liquid solutions of the free radicals: diphenyl picryl hydrazyl (DPPH), -anisyl nitrogen oxide, and 2-(phenyl nitrogen oxide)-2-methyl pentane-4-one-oxime--phenyl ether. The measurements indicate fields axially symmetric about the paramagnetic element in the first two, with , for the first and , for the second. The third radical has a lower symmetry with , , and along the principal axes of susceptibility. The hyperfine structure of DPPH in dilute solution (earlier observed by others) consists of five components, arising from interactions with the two nuclei of the group. The other two radicals of the present study were found to have in dilute liquid solution a triplet hyperfine structure arising from interaction with a single nucleus. This structure is interpreted as indicating that the odd electron is localized mainly on an —N=O group in each radical. The anisotropies in the factors are believed to arise mainly from a residual spin-orbit coupling. A sensitive millimeter-wave magnetic-resonance spectrometer employing superheterodyne detection with a crystal multiplier as the beat frequency oscillator is described.
Keywords
This publication has 5 references indexed in Scilit:
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