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(17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals

The possibility of enriching in (17)O the water molecules within hydrated biominerals belonging to the Ca-pyrophosphate family was investigated, using liquid assisted grinding (LAG) in the presence of (17)O-labelled water. Two phases with different hydration levels, namely triclinic calcium pyrophos...

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Autores principales: Goldberga, Ieva, Jensen, Nicholai D., Combes, Christèle, Mentink-Vigier, Frédéric, Wang, Xiaoling, Hung, Ivan, Gan, Zhehong, Trébosc, Julien, Métro, Thomas-Xavier, Bonhomme, Christian, Gervais, Christel, Laurencin, Danielle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9813801/
https://www.ncbi.nlm.nih.gov/pubmed/36134444
http://dx.doi.org/10.1039/d2fd00127f
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author Goldberga, Ieva
Jensen, Nicholai D.
Combes, Christèle
Mentink-Vigier, Frédéric
Wang, Xiaoling
Hung, Ivan
Gan, Zhehong
Trébosc, Julien
Métro, Thomas-Xavier
Bonhomme, Christian
Gervais, Christel
Laurencin, Danielle
author_facet Goldberga, Ieva
Jensen, Nicholai D.
Combes, Christèle
Mentink-Vigier, Frédéric
Wang, Xiaoling
Hung, Ivan
Gan, Zhehong
Trébosc, Julien
Métro, Thomas-Xavier
Bonhomme, Christian
Gervais, Christel
Laurencin, Danielle
author_sort Goldberga, Ieva
collection PubMed
description The possibility of enriching in (17)O the water molecules within hydrated biominerals belonging to the Ca-pyrophosphate family was investigated, using liquid assisted grinding (LAG) in the presence of (17)O-labelled water. Two phases with different hydration levels, namely triclinic calcium pyrophosphate dihydrate (Ca(2)P(2)O(7)·2H(2)O, denoted t-CPPD) and monoclinic calcium pyrophosphate tetrahydrate (Ca(2)P(2)O(7)·4H(2)O, denoted m-CPPT β) were enriched in (17)O using a “post-enrichment” strategy, in which the non-labelled precursors were ground under gentle milling conditions in the presence of stoichiometric quantities of (17)O-enriched water (introduced here in very small volumes ∼10 μL). Using high-resolution (17)O solid-state NMR (ssNMR) analyses at multiple magnetic fields, and dynamic nuclear polarisation (DNP)-enhanced (17)O NMR, it was possible to show that the labelled water molecules are mainly located at the core of the crystal structures, but that they can enter the lattice in different ways, namely by dissolution/recrystallisation or by diffusion. Overall, this work sheds light on the importance of high-resolution (17)O NMR to help decipher the different roles that water can play as a liquid-assisted grinding agent and as a reagent for (17)O-isotopic enrichment.
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spelling pubmed-98138012023-01-20 (17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals Goldberga, Ieva Jensen, Nicholai D. Combes, Christèle Mentink-Vigier, Frédéric Wang, Xiaoling Hung, Ivan Gan, Zhehong Trébosc, Julien Métro, Thomas-Xavier Bonhomme, Christian Gervais, Christel Laurencin, Danielle Faraday Discuss Chemistry The possibility of enriching in (17)O the water molecules within hydrated biominerals belonging to the Ca-pyrophosphate family was investigated, using liquid assisted grinding (LAG) in the presence of (17)O-labelled water. Two phases with different hydration levels, namely triclinic calcium pyrophosphate dihydrate (Ca(2)P(2)O(7)·2H(2)O, denoted t-CPPD) and monoclinic calcium pyrophosphate tetrahydrate (Ca(2)P(2)O(7)·4H(2)O, denoted m-CPPT β) were enriched in (17)O using a “post-enrichment” strategy, in which the non-labelled precursors were ground under gentle milling conditions in the presence of stoichiometric quantities of (17)O-enriched water (introduced here in very small volumes ∼10 μL). Using high-resolution (17)O solid-state NMR (ssNMR) analyses at multiple magnetic fields, and dynamic nuclear polarisation (DNP)-enhanced (17)O NMR, it was possible to show that the labelled water molecules are mainly located at the core of the crystal structures, but that they can enter the lattice in different ways, namely by dissolution/recrystallisation or by diffusion. Overall, this work sheds light on the importance of high-resolution (17)O NMR to help decipher the different roles that water can play as a liquid-assisted grinding agent and as a reagent for (17)O-isotopic enrichment. The Royal Society of Chemistry 2022-08-17 /pmc/articles/PMC9813801/ /pubmed/36134444 http://dx.doi.org/10.1039/d2fd00127f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Goldberga, Ieva
Jensen, Nicholai D.
Combes, Christèle
Mentink-Vigier, Frédéric
Wang, Xiaoling
Hung, Ivan
Gan, Zhehong
Trébosc, Julien
Métro, Thomas-Xavier
Bonhomme, Christian
Gervais, Christel
Laurencin, Danielle
(17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals
title (17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals
title_full (17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals
title_fullStr (17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals
title_full_unstemmed (17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals
title_short (17)O solid state NMR as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)O-enrichment of hydrated Ca-pyrophosphate biominerals
title_sort (17)o solid state nmr as a valuable tool for deciphering reaction mechanisms in mechanochemistry: the case study on the (17)o-enrichment of hydrated ca-pyrophosphate biominerals
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9813801/
https://www.ncbi.nlm.nih.gov/pubmed/36134444
http://dx.doi.org/10.1039/d2fd00127f
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