| Literature DB >> 30774912 |
Lu Zhou1, Chuan Zhu1, Peijia Bi1, Chao Feng1.
Abstract
We describe a nickel-catalyzed highly regio- and stereoselective migratory fluoro-alkenylation of unactivated alkyl bromides. A unique catalytic cycle merging alkyl nickel chain-walking and defluorinative coupling enables the introduction of a broad array of fluoroalkenyl moieties into carbon chains. Control experiments with other halogenated alkenes demonstrated the essential role of fluorine atoms in this reaction. Notably, the reaction proceeds under mild conditions and allows for the synthesis of a variety of valuable monofluoroalkenes.Entities:
Year: 2018 PMID: 30774912 PMCID: PMC6349022 DOI: 10.1039/c8sc04162h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Migratory functionalization of unactivated alkyl halides.
Scheme 2Reaction design.
Optimization of reaction conditions
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Unless otherwise noted, reactions were carried out with 0.5 mmol of 1a, 0.2 mmol of 2a, 5 mol% of Ni(ClO4)2·6H2O, 6 mol% of ligand, 0.5 mmol of Mn powder and 0.1 mmol of additive in 1 mL of DMA at 25 °C for 12 h.
Determined by 1H NMR versus an internal standard.
The regioisomeric ratio was higher than 100 : 1 according to 19F NMR of the crude product.
0.48 mmol of Mn powder was used.
Isolated yield.
1.0 mmol scale reaction.
Scheme 3Substrate scope. See the ESI† for experimental details. Isolated yields are indicated. The regioisomeric ratio (rr, the ratio of the benzylic fluoro-alkenylation product to the other regioisomers) was determined by 19F NMR analysis of the crude product. PMP = p-methoxyphenyl. Ts = tosyl. TBS = tert-butyldimethylsilyl.
Scheme 4Synthetic applications.
Scheme 5Control experiments (Ar = 4-MeOCOC6H4).