Cargando…

Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes

[Image: see text] Direct synthetic routes to amidines are desired, as they are widely present in many biologically active compounds and organometallic complexes. N-Acyl amidines in particular can be used as a starting material for the synthesis of heterocycles and have several other applications. He...

Descripción completa

Detalles Bibliográficos
Autores principales: van Vliet, Kaj M., Polak, Lara H., Siegler, Maxime A., van der Vlugt, Jarl Ivar, Guerra, Célia Fonseca, de Bruin, Bas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6764152/
https://www.ncbi.nlm.nih.gov/pubmed/31465210
http://dx.doi.org/10.1021/jacs.9b07140
_version_ 1783454318158938112
author van Vliet, Kaj M.
Polak, Lara H.
Siegler, Maxime A.
van der Vlugt, Jarl Ivar
Guerra, Célia Fonseca
de Bruin, Bas
author_facet van Vliet, Kaj M.
Polak, Lara H.
Siegler, Maxime A.
van der Vlugt, Jarl Ivar
Guerra, Célia Fonseca
de Bruin, Bas
author_sort van Vliet, Kaj M.
collection PubMed
description [Image: see text] Direct synthetic routes to amidines are desired, as they are widely present in many biologically active compounds and organometallic complexes. N-Acyl amidines in particular can be used as a starting material for the synthesis of heterocycles and have several other applications. Here, we describe a fast and practical copper-catalyzed three-component reaction of aryl acetylenes, amines, and easily accessible 1,4,2-dioxazol-5-ones to N-acyl amidines, generating CO(2) as the only byproduct. Transformation of the dioxazolones on the Cu catalyst generates acyl nitrenes that rapidly insert into the copper acetylide Cu–C bond rather than undergoing an undesired Curtius rearrangement. For nonaromatic dioxazolones, [Cu(OAc)(Xantphos)] is a superior catalyst for this transformation, leading to full substrate conversion within 10 min. For the direct synthesis of N-benzoyl amidine derivatives from aromatic dioxazolones, [Cu(OAc)(Xantphos)] proved to be inactive, but moderate to good yields were obtained when using simple copper(I) iodide (CuI) as the catalyst. Mechanistic studies revealed the aerobic instability of one of the intermediates at low catalyst loadings, but the reaction could still be performed in air for most substrates when using catalyst loadings of 5 mol %. The herein reported procedure not only provides a new, practical, and direct route to N-acyl amidines but also represents a new type of C–N bond formation.
format Online
Article
Text
id pubmed-6764152
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-67641522019-09-30 Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes van Vliet, Kaj M. Polak, Lara H. Siegler, Maxime A. van der Vlugt, Jarl Ivar Guerra, Célia Fonseca de Bruin, Bas J Am Chem Soc [Image: see text] Direct synthetic routes to amidines are desired, as they are widely present in many biologically active compounds and organometallic complexes. N-Acyl amidines in particular can be used as a starting material for the synthesis of heterocycles and have several other applications. Here, we describe a fast and practical copper-catalyzed three-component reaction of aryl acetylenes, amines, and easily accessible 1,4,2-dioxazol-5-ones to N-acyl amidines, generating CO(2) as the only byproduct. Transformation of the dioxazolones on the Cu catalyst generates acyl nitrenes that rapidly insert into the copper acetylide Cu–C bond rather than undergoing an undesired Curtius rearrangement. For nonaromatic dioxazolones, [Cu(OAc)(Xantphos)] is a superior catalyst for this transformation, leading to full substrate conversion within 10 min. For the direct synthesis of N-benzoyl amidine derivatives from aromatic dioxazolones, [Cu(OAc)(Xantphos)] proved to be inactive, but moderate to good yields were obtained when using simple copper(I) iodide (CuI) as the catalyst. Mechanistic studies revealed the aerobic instability of one of the intermediates at low catalyst loadings, but the reaction could still be performed in air for most substrates when using catalyst loadings of 5 mol %. The herein reported procedure not only provides a new, practical, and direct route to N-acyl amidines but also represents a new type of C–N bond formation. American Chemical Society 2019-08-29 2019-09-25 /pmc/articles/PMC6764152/ /pubmed/31465210 http://dx.doi.org/10.1021/jacs.9b07140 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle van Vliet, Kaj M.
Polak, Lara H.
Siegler, Maxime A.
van der Vlugt, Jarl Ivar
Guerra, Célia Fonseca
de Bruin, Bas
Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes
title Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes
title_full Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes
title_fullStr Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes
title_full_unstemmed Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes
title_short Efficient Copper-Catalyzed Multicomponent Synthesis of N-Acyl Amidines via Acyl Nitrenes
title_sort efficient copper-catalyzed multicomponent synthesis of n-acyl amidines via acyl nitrenes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6764152/
https://www.ncbi.nlm.nih.gov/pubmed/31465210
http://dx.doi.org/10.1021/jacs.9b07140
work_keys_str_mv AT vanvlietkajm efficientcoppercatalyzedmulticomponentsynthesisofnacylamidinesviaacylnitrenes
AT polaklarah efficientcoppercatalyzedmulticomponentsynthesisofnacylamidinesviaacylnitrenes
AT sieglermaximea efficientcoppercatalyzedmulticomponentsynthesisofnacylamidinesviaacylnitrenes
AT vandervlugtjarlivar efficientcoppercatalyzedmulticomponentsynthesisofnacylamidinesviaacylnitrenes
AT guerraceliafonseca efficientcoppercatalyzedmulticomponentsynthesisofnacylamidinesviaacylnitrenes
AT debruinbas efficientcoppercatalyzedmulticomponentsynthesisofnacylamidinesviaacylnitrenes