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Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides

A conceptionally novel nucleophilic substitution approach to synthetically important alkyl bromides is presented. Using molecular bromine (Br(2)), readily available secondary benzyl and tertiary alkyl phenyl sulphides are converted into the corresponding bromides under exceptionally mild, acid- and...

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Autores principales: Canestrari, Daniele, Cioffi, Caterina, Biancofiore, Ilaria, Lancianesi, Stefano, Ghisu, Lorenza, Ruether, Manuel, O'Brien, John, Adamo, Mauro F. A., Ibrahim, Hasim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6889150/
https://www.ncbi.nlm.nih.gov/pubmed/31827746
http://dx.doi.org/10.1039/c9sc03560e
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author Canestrari, Daniele
Cioffi, Caterina
Biancofiore, Ilaria
Lancianesi, Stefano
Ghisu, Lorenza
Ruether, Manuel
O'Brien, John
Adamo, Mauro F. A.
Ibrahim, Hasim
author_facet Canestrari, Daniele
Cioffi, Caterina
Biancofiore, Ilaria
Lancianesi, Stefano
Ghisu, Lorenza
Ruether, Manuel
O'Brien, John
Adamo, Mauro F. A.
Ibrahim, Hasim
author_sort Canestrari, Daniele
collection PubMed
description A conceptionally novel nucleophilic substitution approach to synthetically important alkyl bromides is presented. Using molecular bromine (Br(2)), readily available secondary benzyl and tertiary alkyl phenyl sulphides are converted into the corresponding bromides under exceptionally mild, acid- and base-free reaction conditions. This simple transformation allows the isolation of elimination sensitive benzylic β-bromo carbonyl and nitrile compounds in mostly high yields and purities. Remarkably, protic functionalities such as acids and alcohols are tolerated. Enantioenriched benzylic β-sulphido esters, readily prepared by asymmetric sulpha-Michael addition, produce the corresponding inverted bromides with high stereoselectivities, approaching complete enantiospecificity at –40 °C. Significantly, the reported benzylic β-bromo esters can be stored without racemisation for prolonged periods at –20 °C. Their synthetic potential was demonstrated by the one-pot preparation of γ-azido alcohol (S)-5 in 90% ee. NMR studies revealed an initial formation of a sulphide bromine adduct, which in turn is in equilibrium with a postulated dibromosulphurane intermediate that undergoes C–Br bond formation.
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spelling pubmed-68891502019-12-11 Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides Canestrari, Daniele Cioffi, Caterina Biancofiore, Ilaria Lancianesi, Stefano Ghisu, Lorenza Ruether, Manuel O'Brien, John Adamo, Mauro F. A. Ibrahim, Hasim Chem Sci Chemistry A conceptionally novel nucleophilic substitution approach to synthetically important alkyl bromides is presented. Using molecular bromine (Br(2)), readily available secondary benzyl and tertiary alkyl phenyl sulphides are converted into the corresponding bromides under exceptionally mild, acid- and base-free reaction conditions. This simple transformation allows the isolation of elimination sensitive benzylic β-bromo carbonyl and nitrile compounds in mostly high yields and purities. Remarkably, protic functionalities such as acids and alcohols are tolerated. Enantioenriched benzylic β-sulphido esters, readily prepared by asymmetric sulpha-Michael addition, produce the corresponding inverted bromides with high stereoselectivities, approaching complete enantiospecificity at –40 °C. Significantly, the reported benzylic β-bromo esters can be stored without racemisation for prolonged periods at –20 °C. Their synthetic potential was demonstrated by the one-pot preparation of γ-azido alcohol (S)-5 in 90% ee. NMR studies revealed an initial formation of a sulphide bromine adduct, which in turn is in equilibrium with a postulated dibromosulphurane intermediate that undergoes C–Br bond formation. Royal Society of Chemistry 2019-08-16 /pmc/articles/PMC6889150/ /pubmed/31827746 http://dx.doi.org/10.1039/c9sc03560e Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Canestrari, Daniele
Cioffi, Caterina
Biancofiore, Ilaria
Lancianesi, Stefano
Ghisu, Lorenza
Ruether, Manuel
O'Brien, John
Adamo, Mauro F. A.
Ibrahim, Hasim
Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
title Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
title_full Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
title_fullStr Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
title_full_unstemmed Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
title_short Sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
title_sort sulphide as a leaving group: highly stereoselective bromination of alkyl phenyl sulphides
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6889150/
https://www.ncbi.nlm.nih.gov/pubmed/31827746
http://dx.doi.org/10.1039/c9sc03560e
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