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H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids

Hydrogen-bonded heterocomplexes formed by POOH-containing acids (diphenylphosphoric 1, dimethylphosphoric 2, diphenylphosphinic 3, and dimethylphosphinic 4) are studied by the low-temperature (100 K) (1)H-NMR and (31)P-NMR using liquefied gases CDF(3)/CDF(2)Cl as a solvent. Formation of cyclic dimer...

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Autores principales: Mulloyarova, Valeriia V., Ustimchuk, Daria O., Filarowski, Aleksander, Tolstoy, Peter M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7221807/
https://www.ncbi.nlm.nih.gov/pubmed/32326122
http://dx.doi.org/10.3390/molecules25081907
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author Mulloyarova, Valeriia V.
Ustimchuk, Daria O.
Filarowski, Aleksander
Tolstoy, Peter M.
author_facet Mulloyarova, Valeriia V.
Ustimchuk, Daria O.
Filarowski, Aleksander
Tolstoy, Peter M.
author_sort Mulloyarova, Valeriia V.
collection PubMed
description Hydrogen-bonded heterocomplexes formed by POOH-containing acids (diphenylphosphoric 1, dimethylphosphoric 2, diphenylphosphinic 3, and dimethylphosphinic 4) are studied by the low-temperature (100 K) (1)H-NMR and (31)P-NMR using liquefied gases CDF(3)/CDF(2)Cl as a solvent. Formation of cyclic dimers and cyclic trimers consisting of molecules of two different acids is confirmed by the analysis of vicinal H/D isotope effects (changes in the bridging proton chemical shift, δH, after the deuteration of a neighboring H-bond). Acids 1 and 4 (or 1 and 3) form heterotrimers with very strong (short) H-bonds (δH ca. 17 ppm). While in the case of all heterotrimers the H-bonds are cyclically arranged head-to-tail, ···O=P–O–H···O=P–O–H···, and thus their cooperative coupling is expected, the signs of vicinal H/D isotope effects indicate an effective anticooperativity, presumably due to steric factors: when one of the H-bonds is elongated upon deuteration, the structure of the heterotrimer adjusts by shortening the neighboring hydrogen bonds. We also demonstrate the formation of cyclic tetramers: in the case of acids 1 and 4 the structure has alternating molecules of 1 and 4 in the cycle, while in case of acids 1 and 3 the cycle has two molecules of 1 followed by two molecules of 3.
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spelling pubmed-72218072020-05-21 H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids Mulloyarova, Valeriia V. Ustimchuk, Daria O. Filarowski, Aleksander Tolstoy, Peter M. Molecules Article Hydrogen-bonded heterocomplexes formed by POOH-containing acids (diphenylphosphoric 1, dimethylphosphoric 2, diphenylphosphinic 3, and dimethylphosphinic 4) are studied by the low-temperature (100 K) (1)H-NMR and (31)P-NMR using liquefied gases CDF(3)/CDF(2)Cl as a solvent. Formation of cyclic dimers and cyclic trimers consisting of molecules of two different acids is confirmed by the analysis of vicinal H/D isotope effects (changes in the bridging proton chemical shift, δH, after the deuteration of a neighboring H-bond). Acids 1 and 4 (or 1 and 3) form heterotrimers with very strong (short) H-bonds (δH ca. 17 ppm). While in the case of all heterotrimers the H-bonds are cyclically arranged head-to-tail, ···O=P–O–H···O=P–O–H···, and thus their cooperative coupling is expected, the signs of vicinal H/D isotope effects indicate an effective anticooperativity, presumably due to steric factors: when one of the H-bonds is elongated upon deuteration, the structure of the heterotrimer adjusts by shortening the neighboring hydrogen bonds. We also demonstrate the formation of cyclic tetramers: in the case of acids 1 and 4 the structure has alternating molecules of 1 and 4 in the cycle, while in case of acids 1 and 3 the cycle has two molecules of 1 followed by two molecules of 3. MDPI 2020-04-20 /pmc/articles/PMC7221807/ /pubmed/32326122 http://dx.doi.org/10.3390/molecules25081907 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mulloyarova, Valeriia V.
Ustimchuk, Daria O.
Filarowski, Aleksander
Tolstoy, Peter M.
H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids
title H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids
title_full H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids
title_fullStr H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids
title_full_unstemmed H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids
title_short H/D Isotope Effects on (1)H-NMR Chemical Shifts in Cyclic Heterodimers and Heterotrimers of Phosphinic and Phosphoric Acids
title_sort h/d isotope effects on (1)h-nmr chemical shifts in cyclic heterodimers and heterotrimers of phosphinic and phosphoric acids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7221807/
https://www.ncbi.nlm.nih.gov/pubmed/32326122
http://dx.doi.org/10.3390/molecules25081907
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