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Mutual Diffusion Driven NMR: a new approach for the analysis of mixtures by spatially resolved NMR spectroscopy
Journal article   Peer reviewed

Mutual Diffusion Driven NMR: a new approach for the analysis of mixtures by spatially resolved NMR spectroscopy

Christian F. Pantoja, Jose A. Bolanos, Andres Bernal and Julien Wist
Magnetic resonance in chemistry, Vol.55(6), pp.519-524
2017
PMID: 27930830

Abstract

Chemistry Chemistry, Multidisciplinary Chemistry, Physical Physical Sciences Science & Technology Spectroscopy Technology
We introduce a new approach for resolving the NMR spectra of mixtures that relies on the mutual diffusion of dissolved species when a concentration gradient is established within the NMR tube. This is achieved by cooling down a biphasic mixture of triethylamine and deuterated water below its mixing temperature, where a single phase is expected. Until equilibrium is reached, a gradient of concentration, from pure' triethylamine to pure' water, establishes within the tube. The amount of time required to reach this equilibrium is controlled by the mutual diffusion coefficient of both species. Moreover, a gradient of concentration exists for each additional compound dissolved in this system, related to the partition coefficient for that compound in the original biphasic state. Using slice selective experiments, it was possible to measure these concentration gradients and use them to separate signals from all the present species. We show the results acquired for a mixture composed of n-octanol, methanol, acetonitrile and benzene and compare them with those obtained by pulse field gradient NMR. Copyright (c) 2016 John Wiley & Sons, Ltd.

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Citation topics
2 Chemistry
2.123 Protein Stucture, Folding & Modelling
2.123.248 Solid-State NMR
Web Of Science research areas
Chemistry, Multidisciplinary
Chemistry, Physical
Spectroscopy
ESI research areas
Chemistry
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