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配体促进的镍催化烯烃与多种天然官能团的双碳官能化反应。

Ligand-enabled Ni-catalysed dicarbofunctionalisation of alkenes with diverse native functional groups.

作者信息

Wang Dao-Ming, Shan Hui-Mei, She Li-Qin, He Yu-Qing, Wu Yichen, Tang Yong, Xu Li-Ping, Wang Peng

机构信息

State Key Laboratory of Organometallic Chemistry and Shanghai-Hong Kong Joint Laboratory in Chemical Synthesis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences (CAS), Shanghai, PR China.

Chang-Kung Chuang Institute, School of Chemistry and Molecular Engineering, East China Normal University, Shanghai, PR China.

出版信息

Nat Commun. 2024 Nov 28;15(1):10333. doi: 10.1038/s41467-024-54170-9.

Abstract

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.

摘要

过渡金属催化的未活化烯烃的双碳官能化通常需要外源强配位导向基团,从而降低了整体反应效率。在此,我们报道了一种配体促进的镍(II)催化的未活化烯烃与芳基/烯基硼酸和卤代烃的双碳官能化反应,其中各种天然官能团作为导向基团,卤代烃作为偶联伙伴。这种双碳官能化方法提供了一条高效直接的途径,可在氧化还原中性条件下,使用伯、仲、叔酰胺、磺酰胺以及仲胺和叔胺,制备邻位1,2-二取代烷烃,而传统方法很难实现这一点。该反应成功的关键在于使用了一种大位阻的β-二酮配体,实验和计算研究均表明,这种配体能够使烯烃插入芳基镍(II)物种中,稳定烷基镍(II)物种并抑制烷基镍(II)的均裂,从而实现这一双碳官能化反应。该双碳官能化反应具有使用天然导向基团、底物范围广和出色的可扩展性等特点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2468/11604661/df5b324cee3f/41467_2024_54170_Fig1_HTML.jpg

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