光催化
钴
催化作用
化学
烷基化
猝灭(荧光)
硼酸
组合化学
化学计量学
光催化
烷基
有机化学
量子力学
荧光
物理
作者
Serena Pillitteri,Prabhat Ranjan,Gerardo M. Ojeda‐Carralero,Laura Y. Vázquez Amaya,Javier Emilio Alfonso Ramos,Erik V. Van der Eycken,Upendra K. Sharma
标识
DOI:10.26434/chemrxiv-2022-f8z56
摘要
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.
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