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Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent

[Image: see text] The structures of equimolar mixtures of the commonly used polar aprotic solvents dimethylformamide (DMF) and dimethylacetamide (DMAc) in dimethyl sulfoxide (DMSO) have been investigated via neutron diffraction augmented by extensive hydrogen/deuterium isotopic substitution. Detaile...

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Autores principales: Di Mino, Camilla, Clancy, Adam J., Sella, Andrea, Howard, Christopher A., Headen, Thomas F., Seel, Andrew G., Skipper, Neal T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9940205/
https://www.ncbi.nlm.nih.gov/pubmed/36752593
http://dx.doi.org/10.1021/acs.jpcb.2c07155
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author Di Mino, Camilla
Clancy, Adam J.
Sella, Andrea
Howard, Christopher A.
Headen, Thomas F.
Seel, Andrew G.
Skipper, Neal T.
author_facet Di Mino, Camilla
Clancy, Adam J.
Sella, Andrea
Howard, Christopher A.
Headen, Thomas F.
Seel, Andrew G.
Skipper, Neal T.
author_sort Di Mino, Camilla
collection PubMed
description [Image: see text] The structures of equimolar mixtures of the commonly used polar aprotic solvents dimethylformamide (DMF) and dimethylacetamide (DMAc) in dimethyl sulfoxide (DMSO) have been investigated via neutron diffraction augmented by extensive hydrogen/deuterium isotopic substitution. Detailed 3-dimensional structural models of these solutions have been derived from the neutron data via Empirical Potential Structure Refinement (EPSR). The intermolecular center-of-mass (CoM) distributions show that the first coordination shell of the amides comprises ∼13–14 neighbors, of which approximately half are DMSO. In spite of this near ideal coordination shell mixing, the changes to the amide–amide structure are found to be relatively subtle when compared to the pure liquids. Analysis of specific intermolecular atom–atom correlations allows quantitative interpretation of the competition between weak interactions in the solution. We find a hierarchy of formic and methyl C–H···O hydrogen bonds forms the dominant local motifs, with peak positions in the range of 2.5–3.0 Å. We also observe a rich variety of steric and dispersion interactions, including those involving the O=C–N amide π-backbones. This detailed insight into the structural landscape of these important liquids demonstrates the versatility of DMSO as a solvent and the remarkable sensitivity of neutron diffraction, which is critical for understanding weak intermolecular interactions at the nanoscale and thereby tailoring solvent properties to specific applications.
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spelling pubmed-99402052023-02-21 Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent Di Mino, Camilla Clancy, Adam J. Sella, Andrea Howard, Christopher A. Headen, Thomas F. Seel, Andrew G. Skipper, Neal T. J Phys Chem B [Image: see text] The structures of equimolar mixtures of the commonly used polar aprotic solvents dimethylformamide (DMF) and dimethylacetamide (DMAc) in dimethyl sulfoxide (DMSO) have been investigated via neutron diffraction augmented by extensive hydrogen/deuterium isotopic substitution. Detailed 3-dimensional structural models of these solutions have been derived from the neutron data via Empirical Potential Structure Refinement (EPSR). The intermolecular center-of-mass (CoM) distributions show that the first coordination shell of the amides comprises ∼13–14 neighbors, of which approximately half are DMSO. In spite of this near ideal coordination shell mixing, the changes to the amide–amide structure are found to be relatively subtle when compared to the pure liquids. Analysis of specific intermolecular atom–atom correlations allows quantitative interpretation of the competition between weak interactions in the solution. We find a hierarchy of formic and methyl C–H···O hydrogen bonds forms the dominant local motifs, with peak positions in the range of 2.5–3.0 Å. We also observe a rich variety of steric and dispersion interactions, including those involving the O=C–N amide π-backbones. This detailed insight into the structural landscape of these important liquids demonstrates the versatility of DMSO as a solvent and the remarkable sensitivity of neutron diffraction, which is critical for understanding weak intermolecular interactions at the nanoscale and thereby tailoring solvent properties to specific applications. American Chemical Society 2023-02-08 /pmc/articles/PMC9940205/ /pubmed/36752593 http://dx.doi.org/10.1021/acs.jpcb.2c07155 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Di Mino, Camilla
Clancy, Adam J.
Sella, Andrea
Howard, Christopher A.
Headen, Thomas F.
Seel, Andrew G.
Skipper, Neal T.
Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent
title Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent
title_full Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent
title_fullStr Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent
title_full_unstemmed Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent
title_short Weak Interactions in Dimethyl Sulfoxide (DMSO)–Tertiary Amide Solutions: The Versatility of DMSO as a Solvent
title_sort weak interactions in dimethyl sulfoxide (dmso)–tertiary amide solutions: the versatility of dmso as a solvent
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9940205/
https://www.ncbi.nlm.nih.gov/pubmed/36752593
http://dx.doi.org/10.1021/acs.jpcb.2c07155
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