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Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings

[Image: see text] In this study, the conformational properties of tertiary trifluoroacetamides in dibenzoazepine (1a and 1b) and benzodiazepine (2a and 2b) derivatives, which exist as equilibrated E- and Z-amide conformers in solution, were investigated by (1)H and (19)F NMR spectroscopy. In all cas...

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Autores principales: Li, Yan, Ohtake, Chinatsu, Hotta, Mayuno, Tabata, Hidetsugu, Hirano, Kiriko, Iida, Motoo, Nakamura, Kayo, Makino, Kosho, Oshitari, Tetsuta, Natsugari, Hideaki, Kusumi, Takenori, Takahashi, Hideyo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10242751/
https://www.ncbi.nlm.nih.gov/pubmed/37200001
http://dx.doi.org/10.1021/acs.joc.3c00311
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author Li, Yan
Ohtake, Chinatsu
Hotta, Mayuno
Tabata, Hidetsugu
Hirano, Kiriko
Iida, Motoo
Nakamura, Kayo
Makino, Kosho
Oshitari, Tetsuta
Natsugari, Hideaki
Kusumi, Takenori
Takahashi, Hideyo
author_facet Li, Yan
Ohtake, Chinatsu
Hotta, Mayuno
Tabata, Hidetsugu
Hirano, Kiriko
Iida, Motoo
Nakamura, Kayo
Makino, Kosho
Oshitari, Tetsuta
Natsugari, Hideaki
Kusumi, Takenori
Takahashi, Hideyo
author_sort Li, Yan
collection PubMed
description [Image: see text] In this study, the conformational properties of tertiary trifluoroacetamides in dibenzoazepine (1a and 1b) and benzodiazepine (2a and 2b) derivatives, which exist as equilibrated E- and Z-amide conformers in solution, were investigated by (1)H and (19)F NMR spectroscopy. In all cases, one of the methylene protons neighboring the nitrogen atom of the minor conformer showed a finely split pattern due to coupling with the trifluoromethyl fluorine atoms, as confirmed by (19)F-decoupling experiments. One-dimensional (1D) and two-dimensional (2D) (1)H–(19)F heteronuclear Overhauser spectroscopy (HOESY) experiments were performed to confirm whether these couplings are attributable to through-bond spin–spin couplings (TBCs) or through-space spin–spin couplings (TSCs). HOESY cross-peaks between CF(3) ((19)F) and one of the CH(2)–N protons of the minor conformers indicate that the two nuclei are spatially close to each other, thus establishing the stereochemistry of the major (E-) and minor (Z-) conformers. The E-amide preferences of the trifluoroacetamides are consistent with the results of density functional theory calculations and X-ray crystallographic analyses. Furthermore, the otherwise incomprehensible (1)H NMR spectra were accurately assigned using the HOESY-determined TSCs. The (1)H NMR assignments of the E- and Z-methyl signals of N,N-dimethyl trifluoroacetamide, the simplest tertiary trifluoroacetamide, were revised for the first time in half a century.
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spelling pubmed-102427512023-06-07 Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings Li, Yan Ohtake, Chinatsu Hotta, Mayuno Tabata, Hidetsugu Hirano, Kiriko Iida, Motoo Nakamura, Kayo Makino, Kosho Oshitari, Tetsuta Natsugari, Hideaki Kusumi, Takenori Takahashi, Hideyo J Org Chem [Image: see text] In this study, the conformational properties of tertiary trifluoroacetamides in dibenzoazepine (1a and 1b) and benzodiazepine (2a and 2b) derivatives, which exist as equilibrated E- and Z-amide conformers in solution, were investigated by (1)H and (19)F NMR spectroscopy. In all cases, one of the methylene protons neighboring the nitrogen atom of the minor conformer showed a finely split pattern due to coupling with the trifluoromethyl fluorine atoms, as confirmed by (19)F-decoupling experiments. One-dimensional (1D) and two-dimensional (2D) (1)H–(19)F heteronuclear Overhauser spectroscopy (HOESY) experiments were performed to confirm whether these couplings are attributable to through-bond spin–spin couplings (TBCs) or through-space spin–spin couplings (TSCs). HOESY cross-peaks between CF(3) ((19)F) and one of the CH(2)–N protons of the minor conformers indicate that the two nuclei are spatially close to each other, thus establishing the stereochemistry of the major (E-) and minor (Z-) conformers. The E-amide preferences of the trifluoroacetamides are consistent with the results of density functional theory calculations and X-ray crystallographic analyses. Furthermore, the otherwise incomprehensible (1)H NMR spectra were accurately assigned using the HOESY-determined TSCs. The (1)H NMR assignments of the E- and Z-methyl signals of N,N-dimethyl trifluoroacetamide, the simplest tertiary trifluoroacetamide, were revised for the first time in half a century. American Chemical Society 2023-05-18 /pmc/articles/PMC10242751/ /pubmed/37200001 http://dx.doi.org/10.1021/acs.joc.3c00311 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 Li, Yan
Ohtake, Chinatsu
Hotta, Mayuno
Tabata, Hidetsugu
Hirano, Kiriko
Iida, Motoo
Nakamura, Kayo
Makino, Kosho
Oshitari, Tetsuta
Natsugari, Hideaki
Kusumi, Takenori
Takahashi, Hideyo
Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings
title Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings
title_full Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings
title_fullStr Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings
title_full_unstemmed Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings
title_short Stereochemical Analysis of Trifluoroacetamide Derivatives Based on Through-Space(1)H–(19)F Spin–Spin Couplings
title_sort stereochemical analysis of trifluoroacetamide derivatives based on through-space(1)h–(19)f spin–spin couplings
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10242751/
https://www.ncbi.nlm.nih.gov/pubmed/37200001
http://dx.doi.org/10.1021/acs.joc.3c00311
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