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反应物诱导原位生成的有机金中间体发生光活化,通过Csp-Csp交叉偶联生成炔基化吲哚。

Reactant-induced photoactivation of in situ generated organogold intermediates leading to alkynylated indoles via Csp-Csp cross-coupling.

作者信息

Zhao Fen, Abdellaoui Mehdi, Hagui Wided, Ballarin-Marion Maria, Berthet Jérôme, Corcé Vincent, Delbaere Stéphanie, Dossmann Héloïse, Espagne Agathe, Forté Jérémy, Jullien Ludovic, Le Saux Thomas, Mouriès-Mansuy Virginie, Ollivier Cyril, Fensterbank Louis

机构信息

Sorbonne Université, CNRS, Institut Parisien de Chimie Moléculaire, 4 Place Jussieu, 75005, Paris, France.

Univ Lille, INSERM, CHU Lille, UMR-S 1172, Lille Neuroscience and Cognition Research Center, 59000, Lille, France.

出版信息

Nat Commun. 2022 Apr 28;13(1):2295. doi: 10.1038/s41467-022-29982-2.

Abstract

Photosensitization of organogold intermediates is an emerging field in catalysis. In this context, an access to 2,3-disubstituted indoles from o-alkynyl aniline and iodoalkyne derivatives via a gold-catalyzed sequence under visible-light irradiation and in the absence of an exogenous photocatalyst was uncovered. A wide scope of the process is observed. Of note, 2-iodo-ynamides can be used as electrophiles in this cross-coupling reaction. The resulting N-alkynyl indoles lend themselves to post-functionalization affording valuable scaffolds, notably benzo[a]carbazoles. Mechanistic studies converge on the fact that a potassium sulfonyl amide generates emissive aggregates in the reaction medium. Static quenching of these aggregates by a vinylgold(I) intermediate yields to an excited state of the latter, which can react with an electrophile via oxidative addition and reductive elimination to forge the key C-C bond. This reactant-induced photoactivation of an organogold intermediate opens rich perspectives in the field of cross-coupling reactions.

摘要

有机金中间体的光敏化是催化领域中一个新兴的研究方向。在此背景下,人们发现了一种在可见光照射且无外源光催化剂的条件下,通过金催化序列从邻炔基苯胺和碘代炔烃衍生物制备2,3-二取代吲哚的方法。该反应适用范围广泛。值得注意的是,2-碘代烯酰胺可作为亲电试剂参与此交叉偶联反应。生成的N-炔基吲哚易于进行后期功能化反应,从而提供有价值的骨架结构,特别是苯并[a]咔唑。机理研究表明,磺酰基钾酰胺在反应介质中会形成发光聚集体。这些聚集体被乙烯基金(I)中间体静态猝灭后,会使后者进入激发态,该激发态可通过氧化加成和还原消除与亲电试剂反应,从而形成关键的碳-碳键。这种反应物诱导的有机金中间体光活化为交叉偶联反应领域开辟了广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea67/9051093/97e2bed8a28c/41467_2022_29982_Fig1_HTML.jpg

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