Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites

Hyperpolarization by dissolution dynamic nuclear polarization has brought highly sensitive magnetic resonance to reality but there still remains severe limitations. Here the authors show an approach relying on the generation of hyperpolarizing polymers that bear a dual function.

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Autores principales: Théo El Daraï, Samuel F. Cousin, Quentin Stern, Morgan Ceillier, James Kempf, Dmitry Eshchenko, Roberto Melzi, Marc Schnell, Laurent Gremillard, Aurélien Bornet, Jonas Milani, Basile Vuichoud, Olivier Cala, Damien Montarnal, Sami Jannin
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e1ff3330ff914a36ad97016ab4dbc720
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spelling oai:doaj.org-article:e1ff3330ff914a36ad97016ab4dbc7202021-12-02T18:49:17ZPorous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites10.1038/s41467-021-24279-22041-1723https://doaj.org/article/e1ff3330ff914a36ad97016ab4dbc7202021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24279-2https://doaj.org/toc/2041-1723Hyperpolarization by dissolution dynamic nuclear polarization has brought highly sensitive magnetic resonance to reality but there still remains severe limitations. Here the authors show an approach relying on the generation of hyperpolarizing polymers that bear a dual function.Théo El DaraïSamuel F. CousinQuentin SternMorgan CeillierJames KempfDmitry EshchenkoRoberto MelziMarc SchnellLaurent GremillardAurélien BornetJonas MilaniBasile VuichoudOlivier CalaDamien MontarnalSami JanninNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Théo El Daraï
Samuel F. Cousin
Quentin Stern
Morgan Ceillier
James Kempf
Dmitry Eshchenko
Roberto Melzi
Marc Schnell
Laurent Gremillard
Aurélien Bornet
Jonas Milani
Basile Vuichoud
Olivier Cala
Damien Montarnal
Sami Jannin
Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
description Hyperpolarization by dissolution dynamic nuclear polarization has brought highly sensitive magnetic resonance to reality but there still remains severe limitations. Here the authors show an approach relying on the generation of hyperpolarizing polymers that bear a dual function.
format article
author Théo El Daraï
Samuel F. Cousin
Quentin Stern
Morgan Ceillier
James Kempf
Dmitry Eshchenko
Roberto Melzi
Marc Schnell
Laurent Gremillard
Aurélien Bornet
Jonas Milani
Basile Vuichoud
Olivier Cala
Damien Montarnal
Sami Jannin
author_facet Théo El Daraï
Samuel F. Cousin
Quentin Stern
Morgan Ceillier
James Kempf
Dmitry Eshchenko
Roberto Melzi
Marc Schnell
Laurent Gremillard
Aurélien Bornet
Jonas Milani
Basile Vuichoud
Olivier Cala
Damien Montarnal
Sami Jannin
author_sort Théo El Daraï
title Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
title_short Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
title_full Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
title_fullStr Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
title_full_unstemmed Porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
title_sort porous functionalized polymers enable generating and transporting hyperpolarized mixtures of metabolites
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e1ff3330ff914a36ad97016ab4dbc720
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