| Literature DB >> 35541228 |
Fu-Jun Liu1, Tian-Tian Sun1, Yun-Gang Yang1, Chao Huang2, Xue-Bing Chen1.
Abstract
A concise and efficient protocol for the regioselective synthesis of dual 1,4-dihydropyridines with several substituted patterns has been developed from a cascade cyclization of enaminones and aldehydes in different media (EtOH/CH3CN). The one-pot cascade reaction involves at least five reactive sites and generates multiple C-C and C-N bonds. The established protocol explores the chemistry of enaminones by employing their three reactive sites. The method has several advantages including mild conditions, operational simplicity, and high bond-forming efficiency. It may offer promise in a variety of biochemical applications. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35541228 PMCID: PMC9079339 DOI: 10.1039/c8ra01236a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Proposed mechanism for the construction of 1,4-DHPs 3 and 4.
Optimization of the reaction conditions for the model reactiona
|
| |||||
|---|---|---|---|---|---|
| Entry | Solvent | Catalyst | Time (h) | Yield | |
| 3a | 4a | ||||
| 1 | EtOH | — | 4 | n.r | n.r |
| 2 | EtOH | Piperidine | 3 | n.r | n.r |
| 3 | EtOH | Et3N | 3 | n.r | n.r |
| 4 | EtOH | DBU | 3 | n.r | n.r |
| 5 | EtOH | DABCO | 3 | n.r | n.r |
| 6 | EtOH |
| 3 | 66 | n.r |
| 7 | EtOH | TFA | 2 | 64 | n.r |
| 8 | EtOH | HOAc | 2 | n.r | n.r |
| 9 | EtOH |
| 2 | n.r | n.r |
| 10 | CH3CN |
| 2 | 43 | 36 |
| 11 | CH3CN | TFA | 2 | 50 | 34 |
| 12 | CH3CN | TfOH | 2 | n.r | Trace |
| 13 | 1,4-Dioxane |
| 2 | 30 | 25 |
| 14 | DMF |
| 2 | 45 | 28 |
| 15 | CH3OH |
| 2 | n.r | n.r |
The reaction was performed with 1a (1.0 mmol), 2a (0.6 mmol), and the solvent (15 mL) was under reflux temperature.
Catalyst (0.3 mmol) was added to the reaction.
Isolated yields were based on enaminone 1a.
Substrate scope of 1 and synthesis of target molecules 3a
|
| ||||
|---|---|---|---|---|
| Entry | 1 (R/R1) | 2 (R2) | 3 | Yield |
| 1 | 1a (4-FC6H5/CH3) | 2a (4-ClC6H5) | 3a | 66 |
| 2 | 1a (4-FC6H5/CH3) | 2b (C6H5) | 3b | 58 |
| 3 | 1b (3-FC6H5/CH3) | 2b (C6H5) | 3c | 62 |
| 4 | 1c (3-ClC6H5/CH3) | 2a (4-ClC6H5) | 3d | 63 |
| 5 | 1c (3-ClC6H5/CH3) | 2b (C6H5) | 3e | 68 |
| 6 | 1d (4-BrC6H5/CH3) | 2a (4-ClC6H5) | 3f | 65 |
| 7 | 1d (4-BrC6H5/CH3) | 2b (C6H5) | 3g | 62 |
| 8 | 1e (3-BrC6H5/CH3) | 2b (C6H5) | 3h | 60 |
| 9 | 1f (C6H5/CH3) | 2a (4-ClC6H5) | 3i | 65 |
| 10 | 1f (C6H5/CH3) | 2b (C6H5) | 3j | 63 |
| 11 | 1f (C6H5/CH3) | 2c (4-OCH3C6H5) | 3k | 64 |
| 12 | 1g (3-CH3C6H5/CH3) | 2b (C6H5) | 3l | 62 |
| 13 | 1h ( | 2a (4-ClC6H5) | 3m | 70 |
| 14 | 1i (4-ClC6H5/H) | 2a (4-ClC6H5) | 3n | 71 |
| 15 | 1j (3-ClC6H5/H) | 2a (4-ClC6H5) | 3o | 72 |
| 16 | 1k (3-BrC6H5/H) | 2c (4-OCH3C6H5) | 3p | 68 |
| 17 | 1l (4-CH3C6H5/H) | 2a (4-ClC6H5) | 3q | 60 |
| 18 | 1a (4-FC6H5/CH3) | 2d ( | 3r | 62 |
The reaction was performed with 1 (1.0 mmol), 2 (0.6 mmol), and p-TSA (0.3 mmol) in EtOH (15 mL) at reflux for 3 hours.
Isolated yields based on enaminones 1.
Scheme 2Substrate scope of the reaction for 1,4-DHPs 4. The reaction was performed with 1 (1.0 mmol), 2 (0.6 mmol), and p-TSA (0.3 mmol) in CH3CN (10 mL) at reflux for 2 h. The yields were isolated based on enaminones 1.
Fig. 1X-ray crystal structures of 3n; ellipsoids are drawn at 30% probability level.
Scheme 3Proposed mechanism for the construction of 1,4-DHPs 3 and 4.