Single‐Scan Selective Excitation of Individual NMR Signals in Overlapping Multiplets

2D NMR is an immensely powerful structural tool but it is time‐consuming. Targeting individual chemical groups by selective excitation in a 1D experiment can give the information required far more quickly. A major problem, however, is that proton NMR spectra are often extensively overlapped, so that...

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Veröffentlicht in:Angewandte Chemie International Edition 2021-01, Vol.60 (2), p.666-669
Hauptverfasser: Kiraly, Peter, Kern, Nicolas, Plesniak, Mateusz P., Nilsson, Mathias, Procter, David J., Morris, Gareth A., Adams, Ralph W.
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Sprache:eng
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Zusammenfassung:2D NMR is an immensely powerful structural tool but it is time‐consuming. Targeting individual chemical groups by selective excitation in a 1D experiment can give the information required far more quickly. A major problem, however, is that proton NMR spectra are often extensively overlapped, so that in practice only a minority of sites can be selectively excited. Here we overcome that problem using a fast, single‐scan method that allows selective excitation of the signals of a single proton multiplet even where it is severely overlapped by other multiplets. The advantages of the method are illustrated in a selective 1D NOESY experiment, the most efficient way to determine relative configuration unambiguously by NMR. The new approach presented here has the potential to broaden significantly the applicability of selective excitation and unlock its real potential for many other experiments. Selective excitation of overlapped multiplets in a single scan broadens the applicability of 1D selective NMR experiments.
ISSN:1433-7851
1521-3773
1521-3773
DOI:10.1002/anie.202011642