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A general method for diagonal peak suppression in homonuclear correlated NMR spectra by spatially and frequency selective pulses.


ABSTRACT: Homonuclear two- and multidimensional NMR spectra are standard experiments for the structure determination of small to medium-sized molecules. In the large majority of homonuclear correlated spectra the diagonal contains the most intense peaks. Cross-peaks near the diagonal could overlap with huge tails of diagonal peaks and can therefore be easily overlooked. Here we present a general method for the suppression of peaks along the diagonal in homonuclear correlated spectra. It is based on a spatially selective excitation followed by the suppression of magnetization which has not changed the frequency during the mixing process. In addition to the auto correlation removal, these experiments are also less affected by magnetic field inhomogeneities due to the slice selective excitation, which on the other side leads to a reduced intensity compared to regular homonuclear correlated spectra.

SUBMITTER: Glanzer S 

PROVIDER: S-EPMC4020460 | biostudies-literature | 2013 Jul

REPOSITORIES: biostudies-literature

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A general method for diagonal peak suppression in homonuclear correlated NMR spectra by spatially and frequency selective pulses.

Glanzer Simon S   Schrank Evelyne E   Zangger Klaus K  

Journal of magnetic resonance (San Diego, Calif. : 1997) 20130422


Homonuclear two- and multidimensional NMR spectra are standard experiments for the structure determination of small to medium-sized molecules. In the large majority of homonuclear correlated spectra the diagonal contains the most intense peaks. Cross-peaks near the diagonal could overlap with huge tails of diagonal peaks and can therefore be easily overlooked. Here we present a general method for the suppression of peaks along the diagonal in homonuclear correlated spectra. It is based on a spat  ...[more]

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