Literature DB >> 15833630

NMR in rotating magnetic fields: magic-angle field spinning.

Dimitris Sakellariou1, Carlos A Meriles, Rachel W Martin, Alexander Pines.   

Abstract

Magic-angle sample spinning is one of the cornerstones in high-resolution NMR of solid and semisolid materials. The technique enhances spectral resolution by averaging away rank 2 anisotropic spin interactions, thereby producing isotropic-like spectra with resolved chemical shifts and scalar couplings. In principle, it should be possible to induce similar effects in a static sample if the direction of the magnetic field is varied (e.g., magic-angle rotation of the B0 field). Here we will review some recent experimental results that show progress toward this goal. Also, we will explore some alternative approaches that may enable the recovery of spectral resolution in cases where the field is rotating off the magic angle. Such a possibility could help mitigate the technical problems that render difficult the practical implementation of this method at moderately strong magnetic fields.

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Year:  2005        PMID: 15833630     DOI: 10.1016/j.mri.2004.11.067

Source DB:  PubMed          Journal:  Magn Reson Imaging        ISSN: 0730-725X            Impact factor:   2.546


  4 in total

1.  Magic-Angle-Spinning NMR Magnet Development: Field Analysis and Prototypes.

Authors:  John Voccio; Seungyong Hahn; Dong Keun Park; Jiayin Ling; Youngjae Kim; Juan Bascuñán; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2013-06

2.  A 1.5-T/75-mm Magic-Angle-Spinning NMR Magnet.

Authors:  John Voccio; Seungyong Hahn; Youngjae Kim; Jiayin Ling; Jungbin Song; Juan Bascuñán; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2013-10-11

3.  A Theoretical Design Approach for Passive Shimming of a Magic-Angle-Spinning NMR Magnet.

Authors:  Frank X Li; John P Voccio; Michael Sammartino; Minchul Ahn; Seungyong Hahn; Juan Bascuñán; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2016-01-12

4.  Hyperpolarization read-out through rapidly rotating fields in the zero- and low-field regime.

Authors:  Laurynas Dagys; Christian Bengs
Journal:  Phys Chem Chem Phys       Date:  2022-04-06       Impact factor: 3.676

  4 in total

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