Cargando…

Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study

A theoretical analysis of the reaction of oxidative sulfamidation of several alkenes was performed in order to explain the various experimental observations and different reactivity of triflamide and non-fluorinated sulfonamides. Transformations occurring in the system alkene–sulfonamide in the pres...

Descripción completa

Detalles Bibliográficos
Autores principales: Kuzmin, Anton V., Moskalik, Mikhail Yu., Shainyan, Bagrat A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660106/
https://www.ncbi.nlm.nih.gov/pubmed/33105742
http://dx.doi.org/10.3390/molecules25214877
_version_ 1783608940973522944
author Kuzmin, Anton V.
Moskalik, Mikhail Yu.
Shainyan, Bagrat A.
author_facet Kuzmin, Anton V.
Moskalik, Mikhail Yu.
Shainyan, Bagrat A.
author_sort Kuzmin, Anton V.
collection PubMed
description A theoretical analysis of the reaction of oxidative sulfamidation of several alkenes was performed in order to explain the various experimental observations and different reactivity of triflamide and non-fluorinated sulfonamides. Transformations occurring in the system alkene–sulfonamide in the presence of oxidative system (Bu(t)OCl + NaI) were analyzed at the MP2/DGDZVP//B3LYP/DGDZVP level of theory using the IEF-PCM method for taking into account the solvent acetonitrile (MeCN) effect. As the model substrates, styrene, trimethyl(vinyl)silane, dimethyl(divinyl)silane and diphenyl(divinyl)silane were chosen and mesylamide, triflamide, tosylamide and p-nosylamide were taken as the reagents. Bu(t)OI generated from Bu(t)OCl and NaI reacts with sulfonamides to give N-iodinated sulfonamides RSO(2)NHI and RSO(2)NI(2) as active intermediates, the iodinating activity of the latter being notably higher. The analysis allowed to answer such challenging questions as different reactivity of nonfluorinated sulfonamides leading to aziridination and of triflamide resulting in the formation the main products of bis-triflamidation, or different regioselectivity of halogenation of styrene and trimethyl(vinyl)silane caused by a linear intermediate iodonium cation in the former case and a cyclic one in the latter.
format Online
Article
Text
id pubmed-7660106
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-76601062020-11-13 Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study Kuzmin, Anton V. Moskalik, Mikhail Yu. Shainyan, Bagrat A. Molecules Article A theoretical analysis of the reaction of oxidative sulfamidation of several alkenes was performed in order to explain the various experimental observations and different reactivity of triflamide and non-fluorinated sulfonamides. Transformations occurring in the system alkene–sulfonamide in the presence of oxidative system (Bu(t)OCl + NaI) were analyzed at the MP2/DGDZVP//B3LYP/DGDZVP level of theory using the IEF-PCM method for taking into account the solvent acetonitrile (MeCN) effect. As the model substrates, styrene, trimethyl(vinyl)silane, dimethyl(divinyl)silane and diphenyl(divinyl)silane were chosen and mesylamide, triflamide, tosylamide and p-nosylamide were taken as the reagents. Bu(t)OI generated from Bu(t)OCl and NaI reacts with sulfonamides to give N-iodinated sulfonamides RSO(2)NHI and RSO(2)NI(2) as active intermediates, the iodinating activity of the latter being notably higher. The analysis allowed to answer such challenging questions as different reactivity of nonfluorinated sulfonamides leading to aziridination and of triflamide resulting in the formation the main products of bis-triflamidation, or different regioselectivity of halogenation of styrene and trimethyl(vinyl)silane caused by a linear intermediate iodonium cation in the former case and a cyclic one in the latter. MDPI 2020-10-22 /pmc/articles/PMC7660106/ /pubmed/33105742 http://dx.doi.org/10.3390/molecules25214877 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
Kuzmin, Anton V.
Moskalik, Mikhail Yu.
Shainyan, Bagrat A.
Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study
title Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study
title_full Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study
title_fullStr Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study
title_full_unstemmed Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study
title_short Trifluoromethanesulfonamide vs. Non-Fluorinated Sulfonamides in Oxidative Sulfamidation of the C=C Bond: An In Silico Study
title_sort trifluoromethanesulfonamide vs. non-fluorinated sulfonamides in oxidative sulfamidation of the c=c bond: an in silico study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660106/
https://www.ncbi.nlm.nih.gov/pubmed/33105742
http://dx.doi.org/10.3390/molecules25214877
work_keys_str_mv AT kuzminantonv trifluoromethanesulfonamidevsnonfluorinatedsulfonamidesinoxidativesulfamidationoftheccbondaninsilicostudy
AT moskalikmikhailyu trifluoromethanesulfonamidevsnonfluorinatedsulfonamidesinoxidativesulfamidationoftheccbondaninsilicostudy
AT shainyanbagrata trifluoromethanesulfonamidevsnonfluorinatedsulfonamidesinoxidativesulfamidationoftheccbondaninsilicostudy