EPR Line Shifts and Line Shape Changes Due to Spin Exchange of Nitroxide Free Radicals in Liquids 2. Extension to High Spin Exchange Frequencies and Inhomogeneously Broadened Spectra
Author(s) -
Barney L. Bales,
Miroslav Perić
Publication year - 2002
Publication title -
the journal of physical chemistry a
Language(s) - English
Resource type - Journals
eISSN - 1520-5215
pISSN - 1089-5639
DOI - 10.1021/jp014518g
Subject(s) - hyperfine structure , chemistry , spectral line , spin (aerodynamics) , line (geometry) , nitroxide mediated radical polymerization , exchange interaction , dispersion (optics) , absorption spectroscopy , electron paramagnetic resonance , atomic physics , absorption (acoustics) , molecular physics , condensed matter physics , nuclear magnetic resonance , physics , ferromagnetism , optics , quantum mechanics , geometry , mathematics , radical polymerization , organic chemistry , copolymer , thermodynamics , polymer
The work in part 1 of this series (J. Phys. Chem. B. 1997, 101, 8707) is extended experimentally and theoretically to include inhomogeneously broadened nitroxide spectra and high spin exchange frequencies. The nitroxide spin probe 16-doxylstearic acid methyl ester, which is severely inhomogeneously broadened by unresolved hyperfine structure in the absence of spin exchange, is studied under conditions in which the spin probe undergoes spin exchange varying from slow exchange to high exchange leading to collapse of the three 14N hyperfine lines into a single line. Over the entire spin exchange frequency range, theoretically predicted spectra are described essentially perfectly by the sum of three absorption and two “dispersion” lines of Lorentzian shape. The dispersion components are of opposite signs for the outer lines and zero for the inner. The intensities and the line widths of the outer absorption lines are different from the center line. Theoretically, adding unresolved hyperfine structure which inh...
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