| Literature DB >> 35516981 |
Huan Yang1, Guanglin Weng1, Dongmei Fang2, Changjiang Peng1, Yuanyuan Zhang1, Xiaomei Zhang1, Zhouyu Wang1.
Abstract
Enantioselective conjugate hydrosilylation of β,β-disubstituted α,β-unsaturated ketones was realized. In the presence of a chiral picolinamide-sulfonate Lewis base catalyst, the reactions provided various chiral ketones bearing a chiral center at the β-position in up to quantitative yields with moderate enantioselectivities. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35516981 PMCID: PMC9063358 DOI: 10.1039/c9ra01180c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Enantioselective conjugate hydrosilylation of α,β-unsaturated ketones by chiral Lewis base catalysts.
Fig. 1Three typical chiral drugs containing chiral ketone moiety.
Fig. 2Evaluation of the chiral Lewis base catalysts 2 in conjugate hydrosilylation of (E)-1,3-diphenylbut-2-en-1-one 1a. Unless otherwise specified, the reactions were carried out with 1a (0.1 mmol), trichlorosilane (0.2 mmol) and catalyst 2 (0.02 mmol) in 1 mL of acetonitrile at 0 °C for 24 hours. Isolated yield based on 1a. The ee values were determined by using chiral HPLC.
Optimization of the reactiona
|
| |||||
|---|---|---|---|---|---|
| Entry | Solvent |
| Time [h] | Yield | ee |
| 1 | CH3CN | 0 | 24 | 77 | 51 ( |
| 2 | CH3CH2CN | 0 | 24 | 84 | 50 ( |
| 3 | C6H5CN | 0 | 24 | 83 | 24 ( |
| 4 | THF | 0 | 24 | 92 | 11 ( |
| 5 | 1,4-Dioxane | 0 | 24 | 63 | 5 ( |
| 6 | CHCl3 | 0 | 24 | 92 | 25 ( |
| 7 | CH2Cl2 | 0 | 24 | 96 | 3 |
| 8 | ClCH2CH2Cl | 0 | 24 | 90 | 10 ( |
| 9 | CCl4 | 0 | 24 | 95 | 35 ( |
| 10 | Toluene | 0 | 24 | 95 | 55 ( |
| 11 | Xylene | 0 | 24 | N.R. | — |
| 12 | Mesitylene | 0 | 24 | N.R. | — |
| 13 | C6H5CF3 | 0 | 24 | 95 | 31 ( |
| 14 | Toluene | −10 | 48 | 97 | 64 ( |
| 15 | Toluene | −20 | 60 | 92 | 65 ( |
| 16 | Toluene | −40 | 72 | N.R. | — |
Unless otherwise specified, the reactions were carried out with 1a (0.1 mmol), trichlorosilane (0.2 mmol) and catalyst 2f (0.02 mmol) in 1 mL of solvent.
Isolated yield based on 1a.
The ee values were determined by using chiral HPLC.
The absolute configuration of 3a was determined by comparison of the retention times of the two enantiomers on the stationary phase with those in the literatures.
Fig. 3Substrate scope of the reaction. Unless otherwise specified, the reactions were carried out with 1 (0.1 mmol), trichlorosilane (0.2 mmol) and catalyst 2f (0.02 mmol) in 1 mL of toluene at −10 °C for 48 hours. Isolated yield based on 1. The ee values were determined by using chiral HPLC. The absolute configuration of 3a was determined by comparison of the retention times of the two enantiomers on the stationary phase with the literatures. The absolute configurations of other products were determined in analogy. aThe reaction time was 60 hours. bThe reaction time was 72 hours.
Scheme 2A plausible reaction mechanism for hydrosilylation of 1a catalyzed by 2f.