| Literature DB >> 30200533 |
Qingqiang Tian1, Zongjie Gan2, Xuetong Wang3, Dan Li4, Wen Luo5, Huajun Wang6, Zeshu Dai7, Jianyong Yuan8.
Abstract
A highly efficient and convenient protocol of imidazolium chloride (30 mol %) catalyzed amidation of amines with moderate to excellent yields was reported. The protocol shows broad substrate scope for aromatic, aliphatic, and heterocyclic primary amines.Entities:
Keywords: catalyst; imidazolium chloride; primary amines; transamidation
Mesh:
Substances:
Year: 2018 PMID: 30200533 PMCID: PMC6225136 DOI: 10.3390/molecules23092234
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Amide bonds in some drug molecules.
Scheme 1Methods for transamidation.
Optimization studies for transamidation a.
|
| |||||
|---|---|---|---|---|---|
| Entry | Base (equiv.) | Solvent (mL) | Temp (°C) | Time (h) | Yield b (%) |
| 1 | CuCl2 | DMA | 150 | 12 | Trace |
| 2 | Zr(SO4)2 | DMA | 150 | 12 | Trace |
| 3 | CH3COOH(2) | DMA | 150 | 6 | 8 |
| 4 | HCl(2) | DMA | 150 | 6 | 46 |
| 5 | H2SO4(2) | DMA | 150 | 6 | 52 |
| 6 | DMA | 150 | 6 | 50 | |
| 7 | Pyridine(3) | DMA | 150 | 6 | Trace |
| 8 | KOtBu(2) | DMA | 150 | 6 | 12 |
| 9 | NaOH(2) | DMA | 150 | 6 | 18 |
| 10 | 2,6-lutidine(3) | DMA | 150 | 6 | Trace |
| 11 | TEA(3) | DMA | 150 | 6 | Trace |
| 12 | Imidazolium chloride(3) | DMA | rt | 6 | Trace |
| 13 | Imidazolium chloride(3) | DMA | 150 | 2 | 96 |
| 14 | Imidazolium chloride(0.5) | DMA | 150 | 2 | 95 |
| 15 | Imidazolium chloride(0.3) | DMA | 150 | 2 | 96 |
| 16 | Imidazolium chloride(0.1) | DMA | 150 | 6 | 65 |
| 17 | Imidazolium chloride(3) | DMA | 30 | 2 | Trace |
| 18 | Imidazolium chloride(3) | DMA | 60 | 2 | 59 |
| 19 | Imidazolium chloride(3) | DMA | 90 | 2 | 68 |
| 20 | Imidazolium chloride(3) | DMA | 135 | 2 | 85 |
| 21 | Imidazole(3) | DMA | 150 | 12 | Trace |
| 22 | - | DMA | 150 | 12 | NOC |
a Reaction conditions: amine (0.3 g, 2.8 mmol, 1 equiv.), solvent (5.0 mL), temperature 60–150 °C, all reagent and substrate addition was done at room temperature (25 °C), b isolated yield; c no reaction.
Synthesis of benzamides via transamidation a.
|
| ||||
|---|---|---|---|---|
| Entry | Substrate | Time | Product | Yield b (%) |
| 1 |
| 2 h |
| 92 |
| 2 |
| 2 h |
| 97 |
| 3 |
| 3 h |
| 90 |
| 4 |
| 2 h |
| 75 |
| 5 |
| 2 h |
| 82 |
| 6 |
| 4 h |
| 84 |
| 7 |
| 6 h |
| 83 |
| 8 |
| 6 h |
| 80 |
| 9 |
| 5 h |
| 89 |
| 10 |
| 6 h |
| 90 |
| 11 |
| 4 h |
| 89 |
| 12 |
| 4 h |
| 63 |
| 13 |
| 5 h |
| 57 |
| 14 |
| 4 h |
| 68 |
| 15 |
| 3 h |
| 93 |
| 16 |
| 3 h |
| 94 |
| 17 |
| 5 h |
| 60 |
| 18 |
| 5 h |
| 72 |
| 19 |
| 5 h |
| 75 |
| 20 |
| 3 h |
| 95 |
| 21 |
| 3 h |
| 94 |
| 22 |
| 3 h |
| 95 |
| 23 |
| 3 h |
| 89 |
a Conditions unless otherwise stated: amine (1.0 equiv.), DMA (1.5 mL), Imidazolium chloride (0.3 equiv.) in a sealed tube at 150 °C for 2–8 h. b isolated yield.
N-benzamides of amines 2a–2ea.
|
| ||||
|---|---|---|---|---|
| Entry | Substrate | Time | Product | Yield b (%) |
| 1 |
| 4 h |
| 89 |
| 2 |
| 4 h |
| 85 |
| 3 |
| 4 h |
| 89 |
| 4 |
| 4 h |
| 71 |
| 5 |
| 3 h |
| 92 |
a Conditions unless otherwise stated: amine (1.0 equiv.), DMF (1.5 mL), Imidazolium chloride (0.3 equiv.) in a sealed tube at 150 °C for 2–8 h. b isolated yield.
N-benzoylation of amines 3a–3da.
|
| ||||
|---|---|---|---|---|
| Entry | Substrate | Time | Product | Yield b (%) |
| 1 |
| 4 h |
| 89 |
| 2 |
| 3 h |
| 94 |
| 3 |
| 3 h |
| 97 |
| 4 |
| 3 h |
| 93 |
a Conditions unless otherwise stated: amine (1.0 equiv.), N,N-Dimethylbenzamide (2.0 equiv.), Imidazolium chloride (0.3 equiv.) in a sealed tube at 150 °C for 2–4 h. b isolated yield.
Scheme 2Plausible mechanism for N-acetylation using imidazolium chloride catalyst.