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区域和对映选择性镍-烷基催化的炔烃氢烷基化反应

Regio- and enantioselective nickel-alkyl catalyzed hydroalkylation of alkynes.

作者信息

Gao Qian, Xu Wei-Cheng, Nie Xuan, Bian Kang-Jie, Yuan Hong-Rui, Zhang Wen, Wu Bing-Bing, Wang Xi-Sheng

机构信息

Department of Pharmacy, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, China.

Department of Chemistry, University of Science and Technology of China, Hefei, China.

出版信息

Nat Commun. 2024 Aug 2;15(1):6556. doi: 10.1038/s41467-024-50947-0.

Abstract

The migratory insertion of metal-hydride into alkene has allowed regioselective access to organometallics, readily participating in subsequent functionalization as one conventional pathway of hydroalkylation, whereas analogous process with feedstock alkyne is drastically less explored. Among few examples, the regioselectivity of metal-hydride insertion is mostly governed by electronic bias of alkynes. To alter the regioselectivity and drastically expand the intermediate pools that we can access, one aspirational design is through alternative nickel-alkyl insertion, providing opposite regioselectivity induced by steric demand. Leveraging in situ formed nickel-alkyl species, we herein report the regio- and enantioselective hydroalkylation of alkynes with broad functional group tolerance, excellent regio- and enantioselectivity, enabling efficient route to diverse valuable chiral allylic amines motifs. Preliminary mechanistic studies indicate the aminoalkyl radical species can participate in metal-capture and lead to formation of nickel-alkyl, of which the migratory insertion is key to reverse regioselectivity observed in metal-hydride insertion.

摘要

金属氢化物向烯烃的迁移插入反应使得能够区域选择性地获得有机金属化合物,这些化合物作为氢烷基化的一种传统途径,很容易参与后续的官能团化反应,而与原料炔烃的类似过程则很少被研究。在少数例子中,金属氢化物插入的区域选择性主要受炔烃电子偏向的控制。为了改变区域选择性并大幅扩展我们能够获得的中间体库,一种理想的设计是通过选择性相反的镍-烷基插入反应,该反应由空间需求诱导。利用原位形成的镍-烷基物种,我们在此报告了炔烃的区域和对映选择性氢烷基化反应,该反应具有广泛的官能团耐受性、出色的区域和对映选择性,为合成各种有价值的手性烯丙基胺结构提供了有效途径。初步机理研究表明,氨基烷基自由基物种可参与金属捕获并导致镍-烷基的形成,其中迁移插入是在金属氢化物插入中观察到的区域选择性反转的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f49c/11297161/24761b1bf608/41467_2024_50947_Fig1_HTML.jpg

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