Cargando…

An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies

A catalytic system for intramolecular C(sp(2))–H and C(sp(3))–H amination of substituted tetrazolopyridines has been successfully developed. The amination reactions are developed using an iron-porphyrin based catalytic system. It has been demonstrated that the same iron-porphyrin based catalytic sys...

Descripción completa

Detalles Bibliográficos
Autores principales: Das, Sandip Kumar, Das, Subrata, Ghosh, Supratim, Roy, Satyajit, Pareek, Monika, Roy, Brindaban, Sunoj, Raghavan B., Chattopadhyay, Buddhadeb
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/PMC9580522/
https://www.ncbi.nlm.nih.gov/pubmed/36320905
http://dx.doi.org/10.1039/d2sc03505g
_version_ 1784812405647212544
author Das, Sandip Kumar
Das, Subrata
Ghosh, Supratim
Roy, Satyajit
Pareek, Monika
Roy, Brindaban
Sunoj, Raghavan B.
Chattopadhyay, Buddhadeb
author_facet Das, Sandip Kumar
Das, Subrata
Ghosh, Supratim
Roy, Satyajit
Pareek, Monika
Roy, Brindaban
Sunoj, Raghavan B.
Chattopadhyay, Buddhadeb
author_sort Das, Sandip Kumar
collection PubMed
description A catalytic system for intramolecular C(sp(2))–H and C(sp(3))–H amination of substituted tetrazolopyridines has been successfully developed. The amination reactions are developed using an iron-porphyrin based catalytic system. It has been demonstrated that the same iron-porphyrin based catalytic system efficiently activates both the C(sp(2))–H and C(sp(3))–H bonds of the tetrazole as well as azide-featuring substrates with a high level of regioselectivity. The method exhibited an excellent functional group tolerance. The method affords three different classes of high-value N-heterocyclic scaffolds. A number of important late-stage C–H aminations have been performed to access important classes of molecules. Detailed studies (experimental and computational) showed that both the C(sp(2))–H and C(sp(3))–H amination reactions involve a metalloradical activation mechanism, which is different from the previously reported electro-cyclization mechanism. Collectively, this study reports the discovery of a new class of metalloradical activation modes using a base metal catalyst that should find wide application in the context of medicinal chemistry, drug discovery and industrial applications.
format Online
Article
Text
id pubmed-9580522
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-95805222022-10-31 An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies Das, Sandip Kumar Das, Subrata Ghosh, Supratim Roy, Satyajit Pareek, Monika Roy, Brindaban Sunoj, Raghavan B. Chattopadhyay, Buddhadeb Chem Sci Chemistry A catalytic system for intramolecular C(sp(2))–H and C(sp(3))–H amination of substituted tetrazolopyridines has been successfully developed. The amination reactions are developed using an iron-porphyrin based catalytic system. It has been demonstrated that the same iron-porphyrin based catalytic system efficiently activates both the C(sp(2))–H and C(sp(3))–H bonds of the tetrazole as well as azide-featuring substrates with a high level of regioselectivity. The method exhibited an excellent functional group tolerance. The method affords three different classes of high-value N-heterocyclic scaffolds. A number of important late-stage C–H aminations have been performed to access important classes of molecules. Detailed studies (experimental and computational) showed that both the C(sp(2))–H and C(sp(3))–H amination reactions involve a metalloradical activation mechanism, which is different from the previously reported electro-cyclization mechanism. Collectively, this study reports the discovery of a new class of metalloradical activation modes using a base metal catalyst that should find wide application in the context of medicinal chemistry, drug discovery and industrial applications. The Royal Society of Chemistry 2022-09-13 /pmc/articles/PMC9580522/ /pubmed/36320905 http://dx.doi.org/10.1039/d2sc03505g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Das, Sandip Kumar
Das, Subrata
Ghosh, Supratim
Roy, Satyajit
Pareek, Monika
Roy, Brindaban
Sunoj, Raghavan B.
Chattopadhyay, Buddhadeb
An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies
title An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies
title_full An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies
title_fullStr An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies
title_full_unstemmed An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies
title_short An iron(ii)-based metalloradical system for intramolecular amination of C(sp(2))–H and C(sp(3))–H bonds: synthetic applications and mechanistic studies
title_sort iron(ii)-based metalloradical system for intramolecular amination of c(sp(2))–h and c(sp(3))–h bonds: synthetic applications and mechanistic studies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9580522/
https://www.ncbi.nlm.nih.gov/pubmed/36320905
http://dx.doi.org/10.1039/d2sc03505g
work_keys_str_mv AT dassandipkumar anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT dassubrata anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT ghoshsupratim anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT roysatyajit anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT pareekmonika anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT roybrindaban anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT sunojraghavanb anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT chattopadhyaybuddhadeb anironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT dassandipkumar ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT dassubrata ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT ghoshsupratim ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT roysatyajit ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT pareekmonika ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT roybrindaban ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT sunojraghavanb ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies
AT chattopadhyaybuddhadeb ironiibasedmetalloradicalsystemforintramolecularaminationofcsp2handcsp3hbondssyntheticapplicationsandmechanisticstudies