Author
Listed:
- Xiao-Biao Yan
(Westlake University
Westlake Institute for Advanced Study)
- Lun Li
(Westlake University
Westlake Institute for Advanced Study)
- Wen-Qiang Wu
(Westlake University)
- Lun Xu
(Westlake University)
- Ke Li
(Westlake University
Westlake Institute for Advanced Study)
- Yu-Cheng Liu
(Westlake University)
- Hang Shi
(Westlake University
Westlake Institute for Advanced Study)
Abstract
Hydroalkylation, the direct addition of a C(sp3)–H bond across an olefin, is a desirable strategy to produce valuable, complex structural motifs in functional materials, pharmaceuticals, and natural products. Herein, we report a reliable method for accessing α-branched amines via nickel-catalyzed hydroalkylation reactions. Specifically, by using bis(cyclooctadiene)nickel (Ni(cod)2) together with a phosphine ligand, we achieved a formal C(sp3)–H bond insertion reaction between olefins and N-sulfonyl amines without the need for an external hydride source. The amine not only provides the alkyl motif but also delivers hydride to the olefin by means of a nickel-engaged β–hydride elimination/reductive elimination process. This method provides a platform for constructing chiral α-branched amines by using a P-chiral ligand, demonstrating its potential utility in organic synthesis. Notably, a sulfonamidyl boronate complex formed in situ under basic conditions promotes ring-opening of the azanickellacycle reaction intermediate, leading to a significant improvement of the catalytic efficiency.
Suggested Citation
Xiao-Biao Yan & Lun Li & Wen-Qiang Wu & Lun Xu & Ke Li & Yu-Cheng Liu & Hang Shi, 2021.
"Ni-catalyzed hydroalkylation of olefins with N-sulfonyl amines,"
Nature Communications, Nature, vol. 12(1), pages 1-10, December.
Handle:
RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-021-26194-y
DOI: 10.1038/s41467-021-26194-y
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