The Journal of Chemical Physics · 1993 · 267 citations · 40 references
EngineeringDeer Modulation AmplitudesSpin SystemsMagnetic ResonanceOrganic ChemistryDisordered SolidsChemistrySpin DynamicSpin PhenomenonSpectra-structure CorrelationMagnetismEcho EnvelopeElectron Paramagnetic ResonanceBiophysicsMolecular SpectroscopySpin-orbit EffectsDipolar SpectrumPhysicsSpectroscopic MeasurementSolid-state PhysicQuantum MagnetismMicrowave SpectroscopySpintronicsNatural SciencesSpectroscopyCondensed Matter PhysicsApplied Physics
A DEER (double electron–electron resonance) spin–echo technique was applied to measure the electron–electron dipolar spectrum of a frozen toluene solution of the biradical, 2,6-bis[(((2,2,5, 5-tetramethyl-1-oxypyrrolin-3-yl)carbonyl)oxy)]-anthracene. Modulation of the DEER spin–echo envelope was observed and identified as originating from the dipolar coupling between the two nitroxide spins of the biradical. Fourier transformation of the modulated components of the echo envelope yielded a dipolar spectrum from which a spin–pair separation of 19.73±0.14 Å was calculated. Constraints on the relative orientation of the two nitroxide spin moieties were obtained by analysis of the effect of the microwave pulse orientational selectivity on the DEER modulation amplitudes. Molecular models of the studied compound exhibit structures that correspond well with the structural information deduced by DEER spectroscopy.
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Magnetic Resonance for Nonrotating Fields
F. Bloch, A. J. F. Siegert · Physical Review · 1940 · 1.2K citations
Magnetism, Spintronics, Engineering +12
H. Barkhuijsen, Randall D. Beer, W.M.M.J. Bovée et al. · Journal of Magnetic Resonance (1969) · 1985 · 475 citations
Engineering, Time-domain Signals, Multidimensional Signal Processing +9