| Literature DB >> 35515917 |
Tao Wang1,2, Jiarui Guo1,2, Xiaojuan Wang1,2, Han Guo1,2, Dingli Jia1,2, Hengjin Wang1,2, Lantao Liu1,2.
Abstract
N-heterocyclic carbene-palladium(ii)-catalyzed cross-coupling of benzylammonium salts with arylboronic acids for the synthesis of diarylmethane derivatives via C-N bond activation has been developed. Notably, in the presence of the easily prepared and bench-stable Pd-PEPPSI precatalyst, the Csp3-N bond activation of the benzylammonium salt even proceeded smoothly in isopropanol at room temperature. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35515917 PMCID: PMC9060798 DOI: 10.1039/c8ra10439e
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1NHC–Pd(ii) catalyzed coupling reactions of benzylammonium salts with arylboronic acids via Csp3–N bond activation.
Optimization of the cross-coupling reaction on substrate 1aa
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| Entry | Cat. | Base | Solvent | Temp (°C) | Yield |
| 1 | 4a | KO | iPrOH | 70 | 89 |
| 2 | 4a | Na2CO3 | iPrOH | 70 | Trace |
| 3 | 4a | K2CO3 | iPrOH | 70 | 91 |
| 4 | 4a | NaHCO3 | iPrOH | 70 | Trace |
| 5 | 4a | K3PO4 | iPrOH | 70 | 70 |
| 6 | 4a | K3PO4·3H2O | iPrOH | 70 | >99 |
| 7 | 4a | NaOAc | iPrOH | 70 | Trace |
| 8 | 4a | NaOH | iPrOH | 70 | 90 |
| 9 | 4a | KOH | iPrOH | 70 | 98 |
| 10 | 4a | K3PO4·3H2O | THF | 70 | 47 |
| 11 | 4a | K3PO4·3H2O | 1,4-Dioxane | 70 | 98 |
| 12 | 4a | K3PO4·3H2O | EtOH | 70 | 88 |
| 13 | 4a | K3PO4·3H2O | Toluene | 70 | 30 |
| 14 | 4a | K3PO4·3H2O | CH3CN | 70 | 59 |
| 15 | 4a | K3PO4·3H2O | H2O | 70 | 54 |
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| 4a | K3PO4·3H2O | iPrOH | 70 | 82 |
| 17 | 4a | K3PO4·3H2O | iPrOH | 50 | 99 |
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| 19 | 4b | K3PO4·3H2O | iPrOH | rt | 92 |
| 20 | 4c | K3PO4·3H2O | iPrOH | rt | 90 |
| 21 | 4d | K3PO4·3H2O | iPrOH | rt | 22 |
| 22 | 4e | K3PO4·3H2O | iPrOH | rt | 42 |
| 23 | 4f | K3PO4·3H2O | iPrOH | rt | 16 |
| 24 | 4a | K3PO4·3H2O | iPrOH : H2O (1 : 1) | rt | 75 |
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| 26 | 4b | K3PO4·3H2O | iPrOH : H2O (1 : 1) | 50 | 91 |
| 27 | 4c | K3PO4·3H2O | iPrOH : H2O (1 : 1) | 50 | 90 |
| 28 | 4d | K3PO4·3H2O | iPrOH : H2O (1 : 1) | 50 | 86 |
| 29 | 4e | K3PO4·3H2O | iPrOH : H2O (1 : 1) | 50 | 6 |
| 30 | 4f | K3PO4·3H2O | iPrOH : H2O (1 : 1) | 50 | Trace |
All reactions were carried out using 1a (0.20 mmol), 2a (0.40 mmol), base (2.0 equiv.), cat. (5.0 mol%) in solvent (0.1 M) for 15 h.
Cat. (2.0 mol%).
Isolated yields.
Scope of the coupling reaction with respect to the arylboric acid
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All reactions were carried out using 1a (0.20 mmol), 2 (0.40 mmol), K3PO4·3H2O (2.0 equiv.), cat. 4a (5.0 mol%) in iPrOH (0.1 M) at room temperature for 15 h.
All reactions were carried out using 1a (0.20 mmol), 2 (0.40 mmol), K3PO4·3H2O (2.0 equiv), cat. 4a (5.0 mol%) in mixture solvent (iPrOH : H2O [v / v] = 1 : 1, 0.1 M) at 50 °C for 15 h.
Scope of the coupling reaction with respect to the benzylammonium salts
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All reactions were carried out using 1 (0.20 mmol), 2a (0.40 mmol), K3PO4·3H2O (2.0 equiv.), cat. 4a (5.0 mol%) in iPrOH (0.1 M) at room temperature for 15 h.
All reactions were carried out using 1 (0.20 mmol), 2a (0.40 mmol), K3PO4·3H2O (2.0 equiv.), cat. 4a (5.0 mol%) in mixture solvent (iPrOH : H2O [v / v] = 1 : 1, (0.1 M)) at 50 °C for 15 h.
Scheme 2Proposed reaction mechanism.