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Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR

The results of NMR, and especially pulsed field gradient NMR (PFG NMR) investigations, are summarized. Pulsed field gradient NMR technique makes it possible to investigate directly the partial self-diffusion processes in spatial scales from tenth micron to millimeters. Modern NMR spectrometer diffus...

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Autores principales: Volkov, Vitaliy I., Chernyak, Alexander V., Avilova, Irina A., Slesarenko, Nikita A., Melnikova, Daria L., Skirda, Vladimir D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8225114/
https://www.ncbi.nlm.nih.gov/pubmed/34074055
http://dx.doi.org/10.3390/membranes11060385
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author Volkov, Vitaliy I.
Chernyak, Alexander V.
Avilova, Irina A.
Slesarenko, Nikita A.
Melnikova, Daria L.
Skirda, Vladimir D.
author_facet Volkov, Vitaliy I.
Chernyak, Alexander V.
Avilova, Irina A.
Slesarenko, Nikita A.
Melnikova, Daria L.
Skirda, Vladimir D.
author_sort Volkov, Vitaliy I.
collection PubMed
description The results of NMR, and especially pulsed field gradient NMR (PFG NMR) investigations, are summarized. Pulsed field gradient NMR technique makes it possible to investigate directly the partial self-diffusion processes in spatial scales from tenth micron to millimeters. Modern NMR spectrometer diffusive units enable to measure self-diffusion coefficients from 10(−13) m(2)/s to 10(−8) m(2)/s in different materials on (1) H, (2) H, (7) Li, (13) C, (19) F, (23) Na, (31) P, (133) Cs nuclei. PFG NMR became the method of choice for reveals of transport mechanism in polymeric electrolytes for lithium batteries and fuel cells. Second wide field of application this technique is the exchange processes and lateral diffusion in biological cells as well as molecular association of proteins. In this case a permeability, cell size, and associate lifetime could be estimated. The authors have presented the review of their research carried out in Karpov Institute of Physical Chemistry, Moscow, Russia; Institute of Problems of Chemical Physics RAS, Chernogolovka, Russia; Kazan Federal University, Kazan, Russia; Korea University, Seoul, South Korea; Yokohama National University, Yokohama, Japan. The results of water molecule and Li(+), Na(+), Cs(+) cation self-diffusion in Nafion membranes and membranes based on sulfonated polystyrene, water (and water soluble) fullerene derivative permeability in RBC, casein molecule association have being discussed.
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spelling pubmed-82251142021-06-25 Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR Volkov, Vitaliy I. Chernyak, Alexander V. Avilova, Irina A. Slesarenko, Nikita A. Melnikova, Daria L. Skirda, Vladimir D. Membranes (Basel) Review The results of NMR, and especially pulsed field gradient NMR (PFG NMR) investigations, are summarized. Pulsed field gradient NMR technique makes it possible to investigate directly the partial self-diffusion processes in spatial scales from tenth micron to millimeters. Modern NMR spectrometer diffusive units enable to measure self-diffusion coefficients from 10(−13) m(2)/s to 10(−8) m(2)/s in different materials on (1) H, (2) H, (7) Li, (13) C, (19) F, (23) Na, (31) P, (133) Cs nuclei. PFG NMR became the method of choice for reveals of transport mechanism in polymeric electrolytes for lithium batteries and fuel cells. Second wide field of application this technique is the exchange processes and lateral diffusion in biological cells as well as molecular association of proteins. In this case a permeability, cell size, and associate lifetime could be estimated. The authors have presented the review of their research carried out in Karpov Institute of Physical Chemistry, Moscow, Russia; Institute of Problems of Chemical Physics RAS, Chernogolovka, Russia; Kazan Federal University, Kazan, Russia; Korea University, Seoul, South Korea; Yokohama National University, Yokohama, Japan. The results of water molecule and Li(+), Na(+), Cs(+) cation self-diffusion in Nafion membranes and membranes based on sulfonated polystyrene, water (and water soluble) fullerene derivative permeability in RBC, casein molecule association have being discussed. MDPI 2021-05-24 /pmc/articles/PMC8225114/ /pubmed/34074055 http://dx.doi.org/10.3390/membranes11060385 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Volkov, Vitaliy I.
Chernyak, Alexander V.
Avilova, Irina A.
Slesarenko, Nikita A.
Melnikova, Daria L.
Skirda, Vladimir D.
Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR
title Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR
title_full Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR
title_fullStr Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR
title_full_unstemmed Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR
title_short Molecular and Ionic Diffusion in Ion Exchange Membranes and Biological Systems (Cells and Proteins) Studied by NMR
title_sort molecular and ionic diffusion in ion exchange membranes and biological systems (cells and proteins) studied by nmr
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8225114/
https://www.ncbi.nlm.nih.gov/pubmed/34074055
http://dx.doi.org/10.3390/membranes11060385
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