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Difference-NMR techniques for selection of components on the basis of relaxation times
Douglas J Harris1, Eduardo R de Azevedo, Tito J Bonagamba
1Organic Materials Department, Sandia National Laboratories, Albuquerque, NM 87185-1411, USA. douglas.harris@fmglobal.com
Abstract:
This work describes a numerical methodology to obtain more efficient relaxation filters to selectively retain or remove components based on relaxation times. The procedure uses linear combinations of spectra with various recycle or filter delays to obtain components that are both quantitative and pure. Modulation profiles are calculated assuming exponential relaxation behavior. The method is general and can be applied to a wide range of solution or solid-state NMR experiments including direct-polarization (DP), or filtered cross-polarization (CP) spectra. 13C NMR experiments on isotactic poly(1-butene) and dimethyl sulfone showed the utility of the technique for selectively suppressing peaks.