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Visible‐Light Photocatalytic Radical Alkenylation of α‐Carbonyl Alkyl Bromides and Benzyl Bromides
Authors:Dr Qiang Liu  Hong Yi  Jie Liu  Yuhong Yang  Xu Zhang  Ziqi Zeng  Prof Aiwen Lei
Institution:1. The College of Chemistry and Molecular Sciences, Wuhan University, 430072, Wuhan, Hubei (P.R. China), Fax: (+86)?27‐68754672;2. Beijing National Laboratory for Molecule Sciences (BNLMS), Key Laboratory for Molecular Recognition and Function, Institute of Chemistry, the Chinese Academy of Sciences, 100191, Beijing (P.R. China)
Abstract:Through the use of Ru(bpy)3Cl2] (bpy=2,2′‐bipyridine) and Ir(ppy)3] (ppy=phenylpyridine) as photocatalysts, we have achieved the first example of visible‐light photocatalytic radical alkenylation of various α‐carbonyl alkyl bromides and benzyl bromides to furnish α‐vinyl carbonyls and allylbenzene derivatives, prominent structural elements of many bioactive molecules. Specifically, this transformation is regiospecific and can tolerate primary, secondary, and even tertiary alkyl halides that bear β‐hydrides, which can be challenging with traditional palladium‐catalyzed approaches. The key initiation step of this transformation is visible‐light‐induced single‐electron reduction of C? Br bonds to generate alkyl radical species promoted by photocatalysts. The following carbon? carbon bond‐forming step involves a radical addition step rather than a metal‐mediated process, thereby avoiding the undesired β‐hydride elimination side reaction. Moreover, we propose that the Ru and Ir photocatalysts play a dual role in the catalytic system: they absorb energy from the visible light to facilitate the reaction process and act as a medium of electron transfer to activate the alkyl halides more effectively. Overall, this photoredox catalysis method opens new synthetic opportunities for the efficient alkenylation of alkyl halides that contain β‐hydrides under mild conditions.
Keywords:alkenylation  halides  photocatalysis  radical reactions  transition metals
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