Universally quantitative band-selective pure shift NMR spectroscopy
View DatasetDescription
NMR spectroscopy is often described as a quantitative analytical technique. Strictly, only the simple pulse-acquire experiment is universally quantitative, but the poor signal resolution of the 1H NMR pulse-acquire experiment frequently complicates quantitative analysis. Pure shift NMR techniques provide higher resolution, by reducing signal overlap, but they are susceptible to a variety of sources of site-dependent signal loss. Here, we introduce a new method that corrects for signal loss from such sources in band-selective pure shift NMR experiments, by performing different numbers of iterations of the same pulse sequence elements before acquisition to allow extrapolation back to the loss-free signal. We apply this method to both interferogram and semi-real-time acquisition modes, obtaining integrals within 1 % of those acquired from a pulse-acquire experiment for a three-component mixture.
Citations (0)
No citations found
Mentions (0)
No mentions found
Metrics Over Time
Publication Details
DOI
Publisher
University of Manchester
Subfield
Nuclear and High Energy Physics
Field
Physics and Astronomy
Domain
Physical Sciences
Confidence Score
59%
Source
Scholar Data Model