芳基
烷基
化学
烯烃
配体(生物化学)
功能群
组合化学
药物化学
有机化学
催化作用
生物化学
受体
聚合物
作者
Daoming Wang,Hui-Mei Shan,Li‐Qin She,Yu-Qing He,Yi‐Chen Wu,Yong Tang,Li‐Ping Xu,Peng Wang
标识
DOI:10.1038/s41467-024-54170-9
摘要
The transition metal-catalysed dicarbofunctionalisation of unactivated alkenes normally requires exogenous strong coordinated directing groups, thus reducing the overall reaction efficiency. Here, we report a ligand-enabled Ni(II)-catalysed dicarbofunctionalisation of unactivated alkenes with aryl/alkenyl boronic acids and alkyl halides as the coupling partners with a diverse range of native functional groups as the directing group. This dicarbofunctionalisation protocol provides an efficient and direct route towards vicinal 1,2-disubstituted alkanes using primary, secondary, tertiary amides, sulfonamides, as well as secondary and tertiary amines under redox-neutral conditions that are challenging to access through conventional methods. The key to the success of this reaction is the use of a bulky β-diketone ligand, which could enable the insertion of alkene to aryl-Ni(II) species, stabilize the alkyl-Ni(II) species and inhibit the homolytic alkyl-Ni(II) cleavage, supporting by both experimental and computational studies. This dicarbofunctionalisation reaction features the use of native directing group, a broad substrate scope, and excellent scalability. The dicarbofunctionalisation of unactivated alkenes normally requires the use of exogenous strong coordinated directing groups. Here, the authors report a Ni(II)-catalysed dicarbofunctionalisation of unactivated alkenes with aryl/alkenyl boronic acids and alkyl halides as the coupling partners with a diverse range of native functional groups as the directing group.
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