| Literature DB >> 26490453 |
Aurora López1, Alejandro Parra1, Carlos Jarava-Barrera1, Mariola Tortosa1.
Abstract
An efficient and general copper(I)-catalyzed silylation of p-quinone-methides is described. Non-symmetric dibenzylic silanes are obtained in high yields under mild reaction conditions. These compounds can be used as bench-stable benzylic carbanion precursors.Entities:
Year: 2015 PMID: 26490453 PMCID: PMC4847169 DOI: 10.1039/c5cc06653k
Source DB: PubMed Journal: Chem Commun (Camb) ISSN: 1359-7345 Impact factor: 6.222
Scheme 1p-Quinone methides as diaryl derivatives precursors.
Optimization of the reaction conditions
|
| ||||
| Entry | Copper salt | Base | Ligand |
|
| 1 | Cu(CH3CN)4PF6 | NaO | Ph3P | 64 |
| 2 | Cu(CH3CN)4PF6 | NaO | JohnPhos | 64 |
| 3 | Cu(CH3CN)4PF6 | NaO | Xantphos | 50 |
| 4 | Cu(CH3CN)4PF6 | NaO | (±)-BINAP | 45 |
| 5 | Cu(CH3CN)4PF6 | NaO | IMes | 87 |
|
|
|
|
|
|
| 7 | Cu(CH3CN)4PF6 | KO | SIMes | 60 |
| 8 | Cu(CH3CN)4PF6 | LiO | SIMes | 68 |
| 9 | Cu(CH3CN)4PF6 | CsF | SIMes | 61 |
| 10 | CuCl | NaO | SIMes | 55 |
| 11 | Cu2O | NaO | SIMes | 20 |
| 12 | Cu(CH3CN)4PF6 | NaO | SIMes | 35 |
| 13 | Cu(CH3CN)4PF6 | NaO | SIMes | 46 |
| 14 | Cu(CH3CN)4PF6 | NaO | SIMes | 57 |
| 15 | — | NaO | — | — |
Reaction conditions: 1a (0.2 mmol), Me2PhSiBpin (0.22 mmol), base (20 mol%), Cu(CH3CN)4PF6 (10 mol%), ligand (11 mol%), MeOH (0.8 mmol), THF (0.1 M).
Conversion determined by 1H NMR analysis of the crude mixture.
Yield of isolated 2a.
Reaction conditions: 1a (0.2 mmol), Me2PhSiBpin (0.22 mmol), NaOt-Bu (20 mol%), Cu(CH3CN)4PF6 (5 mol%), ligand (11 mol%), MeOH (0.8 mmol), THF (0.1 M).
The reaction was carried out in the absence of MeOH.
0.4 mmol of MeOH were used.
Reaction conditions: 1a (0.2 mmol), Me2PhSiBpin (0.22 mmol), NaOt-Bu (20 mol%), MeOH (0.8 mmol), THF (0.1 M).
Copper(i)-catalyzed silylation of p-quinone methides ,
|
|
|
|
Reaction conditions: 1a (0.2 mmol), Me2PhSiBpin (0.22 mmol), NaOt-Bu (20 mol%), Cu(CH3CN)4PF6 (10 mol%), SIMes (11 mol%), MeOH (0.8 mmol), THF (0.1 M).
Yield of isolated 2.
Fig. 1X-ray structure of compound 2g.
Scheme 2Functionalization of the C–Si bond and de-tert-butylation.
Scheme 3Plausible mechanism for the silylation–aromatization.