| Literature DB >> 30996995 |
Jia Cao1,2, Guoqiang Wang1, Liuzhou Gao1, Hui Chen1, Xueting Liu1, Xu Cheng3, Shuhua Li1.
Abstract
A metal-free and photo-free method for the perfluoroalkylative pyridylation of alkenes has been developed via a combination of computational and experimental studies. Density functional theory calculations and control experiments indicate that the homolysis of Rf-X (X = Br, I) bonds by the 4-cyanopyridine-boryl radicals in situ generated from 4-cyanopyridine and B2pin2 is the key step. Sequential addition of Rf radicals to alkenes and the selective cross-coupling of the resulting alkyl radicals and 4-cyanopyridine-boryl radicals gives alkene difunctionalization products with a quaternary carbon center. This method exhibits a broad substrate scope and good functional group compatibility.Entities:
Year: 2019 PMID: 30996995 PMCID: PMC6419949 DOI: 10.1039/c8sc05237a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Alkene perfluoroalkylation.
Scheme 2(a) 4-cyanopyridine boryl radicals-mediated C–I bond homolysis of perfluorooctyl iodide 1a monitored by 19F NMR; (b) radical trapping experiment.
Scheme 3Proposed 4-cyanopyridine-boryl radicals-mediated alkene difunctionalization.
Fig. 1Computed Gibbs free energy profile of the alkene carbopyridylation via 4-cyanopyrodine boryl radicals. The optimized structures of transition states are also displayed. Interatomic distances are in Å.
Scheme 4Control experiments.
Substrate scope for the radical precursor
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Reaction conditions: 1 (0.2 mmol), B2(pin)2 (0.3 mmol), 4-cyanopyridine 2 (0.3 mmol), 4-methylisopropenylbenzene 3a (0.4 mmol), MTBE (1.0 mL), DIPEA (0.2 mmol), 24 h, 80 °C. Isolated yield.
5 mmol scale. 1e (5 mmol), B2(pin)2 (7.5 mmol), 4-cyanopyridine (7.5 mmol), MTBE (15.0 mL), DIPEA (5.0 mmol), 24 h, 80 °C. Me = methyl, Et = ethyl.
Substrate scope for the alkenes
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Reaction conditions: 1a (0.2 mmol), B2(pin)2 (0.3 mmol), 4-cyanopyridine (0.3 mmol), alkene (0.4 mmol), MTBE (1.0 mL), DIPEA (0.2 mmol), 24 h, 80 °C. Isolated yield. Me = methyl, Et = ethyl, Bu = tert-butyl.