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Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria

It is shown that the presence of hundreds of ppm of water in 1,3-dimethylurea (DMU) powder led to the large depression of the transition temperature between the two enantiotropically related polymorphic forms of DMU (Form II → Form I) from 58 °C to 25 °C, thus explaining the reported discrepancies o...

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Autores principales: Baaklini, Grace, Schindler, Manon, Yuan, Lina, Jores, Clément De Saint, Sanselme, Morgane, Couvrat, Nicolas, Clevers, Simon, Négrier, Philippe, Mondieig, Denise, Dupray, Valérie, Cartigny, Yohann, Gbabode, Gabin, Coquerel, Gerard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609064/
https://www.ncbi.nlm.nih.gov/pubmed/37894540
http://dx.doi.org/10.3390/molecules28207061
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author Baaklini, Grace
Schindler, Manon
Yuan, Lina
Jores, Clément De Saint
Sanselme, Morgane
Couvrat, Nicolas
Clevers, Simon
Négrier, Philippe
Mondieig, Denise
Dupray, Valérie
Cartigny, Yohann
Gbabode, Gabin
Coquerel, Gerard
author_facet Baaklini, Grace
Schindler, Manon
Yuan, Lina
Jores, Clément De Saint
Sanselme, Morgane
Couvrat, Nicolas
Clevers, Simon
Négrier, Philippe
Mondieig, Denise
Dupray, Valérie
Cartigny, Yohann
Gbabode, Gabin
Coquerel, Gerard
author_sort Baaklini, Grace
collection PubMed
description It is shown that the presence of hundreds of ppm of water in 1,3-dimethylurea (DMU) powder led to the large depression of the transition temperature between the two enantiotropically related polymorphic forms of DMU (Form II → Form I) from 58 °C to 25 °C, thus explaining the reported discrepancies on this temperature of transition. Importantly, this case study shows that thermodynamics (through the construction of the DMU–water temperature-composition phase diagram) rather than kinetics is responsible for this significant temperature drop. Furthermore, this work also highlights the existence of a monohydrate of DMU that has never been reported before with a non-congruent fusion at 8 °C. Interestingly, its crystal structure, determined from X-ray powder diffraction data at sub-ambient temperature, consists of a DMU–water hydrogen bonded network totally excluding homo-molecular hydrogen bonds (whereas present in forms I and II of DMU).
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spelling pubmed-106090642023-10-28 Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria Baaklini, Grace Schindler, Manon Yuan, Lina Jores, Clément De Saint Sanselme, Morgane Couvrat, Nicolas Clevers, Simon Négrier, Philippe Mondieig, Denise Dupray, Valérie Cartigny, Yohann Gbabode, Gabin Coquerel, Gerard Molecules Article It is shown that the presence of hundreds of ppm of water in 1,3-dimethylurea (DMU) powder led to the large depression of the transition temperature between the two enantiotropically related polymorphic forms of DMU (Form II → Form I) from 58 °C to 25 °C, thus explaining the reported discrepancies on this temperature of transition. Importantly, this case study shows that thermodynamics (through the construction of the DMU–water temperature-composition phase diagram) rather than kinetics is responsible for this significant temperature drop. Furthermore, this work also highlights the existence of a monohydrate of DMU that has never been reported before with a non-congruent fusion at 8 °C. Interestingly, its crystal structure, determined from X-ray powder diffraction data at sub-ambient temperature, consists of a DMU–water hydrogen bonded network totally excluding homo-molecular hydrogen bonds (whereas present in forms I and II of DMU). MDPI 2023-10-12 /pmc/articles/PMC10609064/ /pubmed/37894540 http://dx.doi.org/10.3390/molecules28207061 Text en © 2023 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 Article
Baaklini, Grace
Schindler, Manon
Yuan, Lina
Jores, Clément De Saint
Sanselme, Morgane
Couvrat, Nicolas
Clevers, Simon
Négrier, Philippe
Mondieig, Denise
Dupray, Valérie
Cartigny, Yohann
Gbabode, Gabin
Coquerel, Gerard
Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria
title Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria
title_full Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria
title_fullStr Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria
title_full_unstemmed Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria
title_short Critical Influence of Water on the Polymorphism of 1,3-Dimethylurea and Other Heterogeneous Equilibria
title_sort critical influence of water on the polymorphism of 1,3-dimethylurea and other heterogeneous equilibria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609064/
https://www.ncbi.nlm.nih.gov/pubmed/37894540
http://dx.doi.org/10.3390/molecules28207061
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