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1D NMR Homodecoupled <sup>1</sup>H Spectra with Scalar Coupling Constants from 2D <i>NemoZS</i>‐DIAG Experiments
49
Citations
19
References
2015
Year
Magnetic ResonanceChemistrySpectra-structure CorrelationElectron Paramagnetic ResonanceAnalytical ChemistryBiophysicsScalar CouplingsPhysicsSelective PulseChemical ShiftsPhysical ChemistryQuantum ChemistrySolution Nmr SpectroscopyMagnetic Resonance SpectroscopyNatural SciencesSpectroscopyDouble ResonanceMedicineNuclear Magnetic Resonance Spectroscopy
A two-dimensional liquid-state NMR experiment cleanly separating chemical shifts and scalar couplings information is introduced. This DIAG experiment takes advantage of a drastic reduction of the spectral window in the indirect dimension to be quickly recorded and of a new non-equidistant modulation of the selective pulse to improve the sensitivity of the broadband homodecoupling Zangger-Sterk sequence element by one order of magnitude. A simple automatic analysis results in 1D spectra displaying singlets and lists of the scalar couplings for first-order multiplets. This facilitates the analysis of 1D spectra by resolving multiplets based on their differences in chemical shifts and coupling structures.
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