ViscY NMR experiments in phosphoric acid as a viscous solvent for individualization of small molecules within mixtures by spin diffusion
Author(s) -
François Pedinielli,
Ritchy Leroy,
Agathe Martinez,
JeanMarc Nuzillard,
Pédro Lameiras
Publication year - 2021
Publication title -
the analyst
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.998
H-Index - 153
eISSN - 1364-5528
pISSN - 0003-2654
DOI - 10.1039/d1an00899d
Subject(s) - phosphoric acid , spin diffusion , diffusion , solvent , nmr spectra database , molecule , spin (aerodynamics) , chemistry , nuclear magnetic resonance spectroscopy , materials science , analytical chemistry (journal) , spectral line , chemical physics , organic chemistry , thermodynamics , physics , astronomy
The analysis of small molecules within complex mixtures is a particularly difficult task when dealing with the study of metabolite mixtures or chemical reaction media. This issue has fostered in recent years an active search for effective and practical solutions. In this context, the ViscY NMR approach has been recently proposed. ViscY collectively designates the NMR experiments that take advantage of spin diffusion in highly viscous solvents or solvent blends for the individualization of the NMR spectra of small molecule mixture components. Two viscous media were prepared from ortho-phosphoric acid (85%) solution by dilution with either D 2 O or DMSO-d 6 , thus providing solvent blends with slightly different polarities in which all liquid-state NMR experiments can be carried out easily. Two mixtures, one of four structurally close dipeptides and one of four low-polarity phosphorus-containing compounds, were used for the method assessment, using ViscY experiments such as homonuclear selective 1D and 2D 1 H NOESY experiments, heteronuclear 2D 1 H- 15 N/ 1 H- 31 P HSQC-NOESY and 1 H- 13 C/ 1 H- 15 N/ 1 H- 31 P NOAH experiments.
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