| Literature DB >> 35480172 |
Tingting Li1, Yuzhu Wu1, Wenzeng Duan2, Yudao Ma1.
Abstract
A base-mediated silylation reaction leading to benzyl silanes has been developed. Under transition-metal and solvent free conditions, the silylation of a wide array of p-quinone methides is achieved using a Cs2CO3 catalyst in yields up to 96%. Carboxylation of the as-obtained organosilane with gaseous CO2 provides a new synthetic protocol for the preparation of carboxylic acid. This journal is © The Royal Society of Chemistry.Entities:
Year: 2021 PMID: 35480172 PMCID: PMC9033227 DOI: 10.1039/d1ra03193g
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Catalytic nucleophilic addition to unsaturated acceptors.
Optimization of reaction conditions
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| Entry |
| Base (mol%) | Additive (equiv.) | Yield |
| 1 | rt | NaO | MeOH (4) | — |
| 2 | rt | Cs2CO3 (5) | H2O (1) | <5 |
| 3 | rt | Cs2CO3 (5) | — | <5 |
| 4 | rt | Cs2CO3 (5) | H2O (1) | 14 |
| 5 | 60 | Cs2CO3 (5) | H2O (1) | 55 |
| 6 | 60 | Cs2CO3 (5) | — | 47 |
| 7 | 70 | Cs2CO3 (5) | H2O (1) | 63 |
| 8 | 80 | Cs2CO3 (5) | H2O (1) | 67 |
| 9 | 90 | Cs2CO3 (5) | H2O (1) | 69 |
| 10 | 80 | Cs2CO3 (5) | H2O (0.5) | 73 |
| 11 | 80 | Cs2CO3 (5) | H2O (2) | 71 |
| 12 | 80 | K2CO3 (5) | H2O (0.5) | 70 |
| 13 | 80 | KOSi(CH3)3 (5) | H2O (0.5) | 64 |
| 14 | 80 | KF (5) | H2O (0.5) | 57 |
| 15 | 80 | KOAc (5) | H2O (0.5) | 67 |
| 16 | 80 | KO | H2O (0.5) | 62 |
| 17 | 80 | DBU (5) | H2O (0.5) | 51 |
| 18 | 80 | Cs2CO3 (5) | H2O (0.5) | 95 |
Yields were determined by 1H NMR analysis.
Reaction conditions: 1a (0.2 mmol), 2 (0.22 mmol), NaOt-Bu (20 mol%), MeOH (0.8 mmol), THF (0.1 M), 12 h.
Reaction conditions: 1a (0.1 mmol), 2 (0.15 mmol), Cs2CO3 (5 mol%), THF (0.1 M).
2 (0.25 mmol) used.
Scheme 2Screening of disilanes.
Substrate scopea,b
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Reaction conditions: 1 (0.2 mmol), 2 (2.5 equiv.), Cs2CO3 (5 mol%), H2O (0.5 equiv.), 80 °C, 24 h.
Yield of isolated 3.
Reaction time was 48 h.
40 °C, 24 h.
Scheme 3Proposed catalytic cycle.
Scheme 4Scale-up experiment and synthetic application of compound 3a.