Catalytic asymmetric C–C cross-couplings enabled by photoexcitation

被引:0
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作者
Giacomo E. M. Crisenza
Adriana Faraone
Eugenio Gandolfo
Daniele Mazzarella
Paolo Melchiorre
机构
[1] Institute of Chemical Research of Catalonia - the Barcelona Institute of Science and Technology,ICIQ
[2] Catalan Institution for Research and Advanced Studies,ICREA
来源
Nature Chemistry | 2021年 / 13卷
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摘要
Enantioselective catalytic processes are promoted by chiral catalysts that can execute a specific mode of catalytic reactivity, channeling the chemical reaction through a certain mechanistic pathway. Here, we show how by simply using visible light we can divert the established ionic reactivity of a chiral allyl–iridium(iii) complex to switch on completely new catalytic functions, enabling mechanistically unrelated radical-based enantioselective pathways. Photoexcitation provides the chiral organometallic intermediate with the ability to activate substrates via an electron-transfer manifold. This redox event unlocks an otherwise inaccessible cross-coupling mechanism, since the resulting iridium(ii) centre can intercept the generated radicals and undergo a reductive elimination to forge a stereogenic centre with high stereoselectivity. This photochemical strategy enables difficult-to-realize enantioselective alkyl–alkyl cross-coupling reactions between allylic alcohols and readily available radical precursors, which are not achievable under thermal activation.
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页码:575 / 580
页数:5
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