Back to Search Start Over

EASY: A simple tool for simultaneously removing background, deadtime and acoustic ringing in quantitative NMR spectroscopy—Part I: Basic principle and applications.

Authors :
Jaeger, Christian
Hemmann, Felix
Source :
Solid State Nuclear Magnetic Resonance. Feb2014, Vol. 57-58, p22-28. 7p.
Publication Year :
2014

Abstract

Abstract: Elimination of Artifacts in NMR SpectroscopY (EASY) is a simple but very effective tool to remove simultaneously any real NMR probe background signal, any spectral distortions due to deadtime ringdown effects and -specifically- severe acoustic ringing artifacts in NMR spectra of low-gamma nuclei. EASY enables and maintains quantitative NMR (qNMR) as only a single pulse (preferably 90°) is used for data acquisition. After the acquisition of the first scan (it contains the wanted NMR signal and the background/deadtime/ringing artifacts) the same experiment is repeated immediately afterwards before the T1 waiting delay. This second scan contains only the background/deadtime/ringing parts. Hence, the simple difference of both yields clean NMR line shapes free of artefacts. In this Part I various examples for complete 1H, 11B, 13C, 19F probe background removal due to construction parts of the NMR probes are presented. Furthermore, 25Mg EASY of Mg(OH)2 is presented and this example shows how extremely strong acoustic ringing can be suppressed (more than a factor of 200) such that phase and baseline correction for spectra acquired with a single pulse is no longer a problem. EASY is also a step towards deadtime-free data acquisition as these effects are also canceled completely. EASY can be combined with any other NMR experiment, including 2D NMR, if baseline distortions are a big problem. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
09262040
Volume :
57-58
Database :
Academic Search Index
Journal :
Solid State Nuclear Magnetic Resonance
Publication Type :
Academic Journal
Accession number :
94487907
Full Text :
https://doi.org/10.1016/j.ssnmr.2013.11.002