Migratory arylboration of unactivated alkenes enabled by nickel catalysis

W Wang, C Ding, Y Li, Z Li, Y Li… - Angewandte Chemie …, 2019 - Wiley Online Library
W Wang, C Ding, Y Li, Z Li, Y Li, L Peng, G Yin
Angewandte Chemie International Edition, 2019Wiley Online Library
An unprecedented arylboration of unactivated terminal alkenes, featuring 1, n‐
regioselectivity, has been achieved by nickel catalysis. The nitrogen‐based ligand plays an
essential role in the success of this three‐component reaction. This transformation displays
good regioselectivity and excellent functional‐group tolerance. In addition, the incorporation
of a boron group into the products provides substantial opportunities for further
transformations. Also demonstrated is that the products can be readily transformed into …
Abstract
An unprecedented arylboration of unactivated terminal alkenes, featuring 1,n‐regioselectivity, has been achieved by nickel catalysis. The nitrogen‐based ligand plays an essential role in the success of this three‐component reaction. This transformation displays good regioselectivity and excellent functional‐group tolerance. In addition, the incorporation of a boron group into the products provides substantial opportunities for further transformations. Also demonstrated is that the products can be readily transformed into pharmaceutically relevant molecules. Unexpectedly, preliminary mechanistic studies indicate that although the metal migration favors the α‐position of boron, selective and decisive bond formation is favored at the benzylic position.
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