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Merging dual photoredox/cobalt catalysis and boronic acid (derivatives) activation for the Minisci reaction

Authors :
Serena Pillitteri
Prabhat Ranjan
Gerardo M. Ojeda-Carralero
Laura Y. Vázquez Amaya
Javier E. Alfonso-Ramos
Erik V. Van der Eycken
Upendra K. Sharma
AMIBM
RS: FSE AMIBM
Source :
Organic Chemistry Frontiers, 9(24), 6958-6967. Royal Society of Chemistry
Publication Year :
2022
Publisher :
American Chemical Society (ACS), 2022.

Abstract

The merger of open-shell and closed-shell organometallic chemistry steps has enabled multiple effective cross-coupling pathways. Here we report a visible-light promoted photoredox-cobalt catalyzed Minisci reaction of N-heteroarenes under mild and sustainable conditions, employing various boronic acids and derivatives as alkyl radical precursors. This study demonstrates the prominent ability of the Co co-catalyst to promote the oxidation step of the photocatalytic cycle following a reductive quenching pathway, thus avoiding the use of stoichiometric (inorganic) oxidants. This feature enables the straightforward application of photo-flow conditions, particularly attractive for an easy scale-up and to enhance the efficiency of the reaction (throughput: 0.78 mmol/h in flow vs 0.02 mmol/h in batch) Furthermore, the process is predominantly selective towards the C2-alkylation of quinolines, and a mechanistic rationale has been provided with both experimental and DFT calculation support. The developed protocol demonstrates broad applicability for the alkylation of different N-heteroarenes under suitable homogeneous conditions for a flow-compatible Minisci reaction.

Details

ISSN :
20524110
Database :
OpenAIRE
Journal :
Organic Chemistry Frontiers, 9(24), 6958-6967. Royal Society of Chemistry
Accession number :
edsair.doi.dedup.....bc7a3ef46607d06612d4e9f5e411c389
Full Text :
https://doi.org/10.26434/chemrxiv-2022-f8z56-v2