Cargando…

A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole

We present here a copper-catalyzed electrophilic ortho C–H amination of protected naphthylamines with N-(benzoyloxy)amines, cyclization with the pendant amide, and carbon to nitrogen 1,2-directing group migration cascade to access N,N-disubstituted 2-benzimidazolinones. Remarkably, this highly atom-...

Descripción completa

Detalles Bibliográficos
Autores principales: Begam, Hasina Mamataj, Nandi, Shantanu, Jana, Ranjan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116329/
https://www.ncbi.nlm.nih.gov/pubmed/35694354
http://dx.doi.org/10.1039/d2sc01420c
_version_ 1784710091926142976
author Begam, Hasina Mamataj
Nandi, Shantanu
Jana, Ranjan
author_facet Begam, Hasina Mamataj
Nandi, Shantanu
Jana, Ranjan
author_sort Begam, Hasina Mamataj
collection PubMed
description We present here a copper-catalyzed electrophilic ortho C–H amination of protected naphthylamines with N-(benzoyloxy)amines, cyclization with the pendant amide, and carbon to nitrogen 1,2-directing group migration cascade to access N,N-disubstituted 2-benzimidazolinones. Remarkably, this highly atom-economic tandem reaction proceeds through a C–H and C–C bond cleavage and three new C–N bond formations in a single operation. Intriguingly, the reaction cascade was altered by the subtle tuning of the directing group from picolinamide to thiopicolinamide furnishing 2-heteroaryl-imidazoles via the extrusion of hydrogen sulfide. This strategy provided a series of benzimidazolones and benzimidazoles in moderate to high yields with low catalyst loading (66 substrates with yields up to 99%). From the control experiments, it was observed that after the C–H amination an incipient tetrahedral oxyanion or thiolate intermediate is formed via an intramolecular attack of the primary amine to the amide/thioamide carbonyl. It undergoes either a 1,2-pyridyl shift with the retention of the carbonyl moiety or H(2)S elimination for scaffold diversification. Remarkably, inspite of a positive influence of copper in the reaction outcome, from our preliminary investigations, the benzimidazolone product was obtained in good to moderate yields in two steps under metal-free conditions. The N-pyridyl moiety of the benzimidazolone was removed for further manipulation of the free NH group.
format Online
Article
Text
id pubmed-9116329
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-91163292022-06-10 A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole Begam, Hasina Mamataj Nandi, Shantanu Jana, Ranjan Chem Sci Chemistry We present here a copper-catalyzed electrophilic ortho C–H amination of protected naphthylamines with N-(benzoyloxy)amines, cyclization with the pendant amide, and carbon to nitrogen 1,2-directing group migration cascade to access N,N-disubstituted 2-benzimidazolinones. Remarkably, this highly atom-economic tandem reaction proceeds through a C–H and C–C bond cleavage and three new C–N bond formations in a single operation. Intriguingly, the reaction cascade was altered by the subtle tuning of the directing group from picolinamide to thiopicolinamide furnishing 2-heteroaryl-imidazoles via the extrusion of hydrogen sulfide. This strategy provided a series of benzimidazolones and benzimidazoles in moderate to high yields with low catalyst loading (66 substrates with yields up to 99%). From the control experiments, it was observed that after the C–H amination an incipient tetrahedral oxyanion or thiolate intermediate is formed via an intramolecular attack of the primary amine to the amide/thioamide carbonyl. It undergoes either a 1,2-pyridyl shift with the retention of the carbonyl moiety or H(2)S elimination for scaffold diversification. Remarkably, inspite of a positive influence of copper in the reaction outcome, from our preliminary investigations, the benzimidazolone product was obtained in good to moderate yields in two steps under metal-free conditions. The N-pyridyl moiety of the benzimidazolone was removed for further manipulation of the free NH group. The Royal Society of Chemistry 2022-04-14 /pmc/articles/PMC9116329/ /pubmed/35694354 http://dx.doi.org/10.1039/d2sc01420c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Begam, Hasina Mamataj
Nandi, Shantanu
Jana, Ranjan
A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
title A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
title_full A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
title_fullStr A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
title_full_unstemmed A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
title_short A directing group switch in copper-catalyzed electrophilic C–H amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
title_sort directing group switch in copper-catalyzed electrophilic c–h amination/migratory annulation cascade: divergent access to benzimidazolone/benzimidazole
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116329/
https://www.ncbi.nlm.nih.gov/pubmed/35694354
http://dx.doi.org/10.1039/d2sc01420c
work_keys_str_mv AT begamhasinamamataj adirectinggroupswitchincoppercatalyzedelectrophilicchaminationmigratoryannulationcascadedivergentaccesstobenzimidazolonebenzimidazole
AT nandishantanu adirectinggroupswitchincoppercatalyzedelectrophilicchaminationmigratoryannulationcascadedivergentaccesstobenzimidazolonebenzimidazole
AT janaranjan adirectinggroupswitchincoppercatalyzedelectrophilicchaminationmigratoryannulationcascadedivergentaccesstobenzimidazolonebenzimidazole
AT begamhasinamamataj directinggroupswitchincoppercatalyzedelectrophilicchaminationmigratoryannulationcascadedivergentaccesstobenzimidazolonebenzimidazole
AT nandishantanu directinggroupswitchincoppercatalyzedelectrophilicchaminationmigratoryannulationcascadedivergentaccesstobenzimidazolonebenzimidazole
AT janaranjan directinggroupswitchincoppercatalyzedelectrophilicchaminationmigratoryannulationcascadedivergentaccesstobenzimidazolonebenzimidazole