An efficient method for Ir-catalyzed ligand free ortho borylation of arenes (such as, 2-phenoxypyridines, 2-anilinopyridines, benzylamines, benzylpiperazines, benzylmorpholines, benzylpyrrolidine, benzylpiperidines, benzylazepanes, α-amino acid derivatives, aminophenylethane derivatives, and other important scaffolds) and pharmaceuticals has been developed. The reaction underwent via an interesting mechanistic pathway, as revealed by the detailed mechanistic investigations by using kinetic isotope studies and DFT calculations. The catalytic cycle is found to involve the intermediacy of an Ir-boryl complex where the substrate C-H activation is the turnover determining step, intriguingly without any appreciable primary KIE. The method displays a broad range of substrate scope and functional group tolerance. Numerous late-stage borylation of various important molecules and drugs were achieved using this developed strategy. The borylated compounds were further converted into more valuable functionalities. Moreover, utilizing the benefit of the B-N intramolecular interaction of the mono borylated compounds, an operationally simple method has been developed for the selective diborylation of 2-phenoxypyridines and numerous functionalized arenes. Furthermore, the synthetic utility has been showcased with the removal of the pyridyl directing group from the borylated product to achieve ortho borylated phenol along with the ipso-borylation for the preparation of 1,2-diborylated benzene.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acs.joc.2c00046DOI Listing

Publication Analysis

Top Keywords

borylation arenes
8
detailed mechanistic
8
borylated compounds
8
ir-catalyzed ligand-free
4
ligand-free directed
4
directed c-h
4
c-h borylation
4
arenes pharmaceuticals
4
pharmaceuticals detailed
4
mechanistic understanding
4

Similar Publications

Multifaceted Hidden Catalysis Revealed by Mechanistic Analysis of FeBr-Catalysed Arene Borylation.

Angew Chem Int Ed Engl

December 2024

EaStCHEM School of Chemistry, University of Edinburgh, Edinburgh, David Brewster Road. Edinburgh, EH9 3FJ, UK.

Article Synopsis
  • Arene borylation reactions allow for the creation of aryl organoboranes like boronic esters, typically requiring precious metals for catalysis.
  • Significant research is focused on using Earth-abundant metals; in this case, iron is used with H-B-9-BBN to catalyze reactions without extra ligands.
  • The study reveals that instead of directly catalyzing, the iron salt initiates the production of a more active haloborane, which plays a crucial role in borylation, indicating a new catalytic mechanism in these reactions.
View Article and Find Full Text PDF

Arylborane complexes ligated by N-heterocyclic carbenes (NHCs) can be synthesized by photoirradiation of a mixture of NHC-boranes and sulfonyl(hetero)arenes. The reaction occurs under mild and convenient conditions without any photocatalyst, which are realized by a radical chain mechanism involving NHC-boryl radicals and sulfonyl radicals. This reaction offered the opportunity to reveal the photophysical property of a 2-borylnaphtho[1,2-]thiazole derivative.

View Article and Find Full Text PDF

Herein, we report the palladium-catalyzed borylation of aryl halides (iodides or bromides) under base-free conditions utilizing a commercially available Lewis acidic mediator, Zn(OTf). Under these conditions, an array of electronically and functional-group-diverse aryl iodides and bromides undergo borylation to afford the corresponding aryl boronic esters in ≤82% isolated yields. Mechanistic investigations are consistent with Zn(OTf) enabling transmetalation between a cationic Pd(II)-Ar intermediate and Bpin via halide abstraction.

View Article and Find Full Text PDF

Aryl thianthrenium salts are valuable in photocatalysis but traditionally require external electron donors for activation. This study introduces an energy transfer (EnT) strategy for the activation of aryl thianthrenium salts using 2,3,4,5,6-penta(carbazol-9-yl)benzonitrile (5CzBN) as a metal-free photocatalyst, eliminating the need for external donors. Utilizing this EnT approach, we achieve C-H deuteration of arenes under visible light with CDCl as a deuterium source to synthesize various deuterated aromatic compounds, including important natural products and pharmaceuticals.

View Article and Find Full Text PDF

Site-selective C-H borylation is an important strategy for constructing molecular diversity in arenes and heteroarenes. Although transition-metal-catalyzed borylation is well explored, developing metal-free strategies remains scarce. Herein, we developed a straightforward approach for BBr-mediated selective C-H borylation of naphthamide and phenyl acetamide derivatives under metal-free conditions.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!