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Observation of strongly forbidden solid effect dynamic nuclear polarization transitions via electron-electron double resonance detected NMR. | LitMetric

AI Article Synopsis

  • This study explores electron paramagnetic resonance experiments that observed dynamic nuclear polarization (DNP) transitions through indirect methods, specifically by monitoring the loss of polarization on the electron.
  • The results indicated that while higher order transitions (involving multiple nuclei) displayed strong intensity, they did not result in bulk nuclear polarization, indicating their role is mainly in transferring polarization to nearby nuclei.
  • The findings suggest the significance of multi-spin mechanisms in DNP, reinforcing recent studies on the solid effect and enhancing our understanding of polarization transfer in these systems.

Article Abstract

We present electron paramagnetic resonance experiments for which solid effect dynamic nuclear polarization transitions were observed indirectly via polarization loss on the electron. This use of indirect observation allows characterization of the dynamic nuclear polarization (DNP) process close to the electron. Frequency profiles of the electron-detected solid effect obtained using trityl radical showed intense saturation of the electron at the usual solid effect condition, which involves a single electron and nucleus. However, higher order solid effect transitions involving two, three, or four nuclei were also observed with surprising intensity, although these transitions did not lead to bulk nuclear polarization--suggesting that higher order transitions are important primarily in the transfer of polarization to nuclei nearby the electron. Similar results were obtained for the SA-BDPA radical where strong electron-nuclear couplings produced splittings in the spectrum of the indirectly observed solid effect conditions. Observation of high order solid effect transitions supports recent studies of the solid effect, and suggests that a multi-spin solid effect mechanism may play a major role in polarization transfer via DNP.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3869827PMC
http://dx.doi.org/10.1063/1.4832323DOI Listing

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