| Literature DB >> 32992704 |
Diego Quiroga1, Lili Dahiana Becerra1, Ericsson Coy-Barrera1.
Abstract
In this paper, we describe the solvent-free three-component synthesis of 2,4,5-trisubstituted-1H-pyrrol-3-ol-type compounds fromEntities:
Keywords: 1H-pyrrol-3-ol; L-tryptophan; enamines; hybrid heterocycles; indole phytoalexin
Mesh:
Substances:
Year: 2020 PMID: 32992704 PMCID: PMC7582317 DOI: 10.3390/molecules25194402
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Yields for obtained product (1) afforded via Scheme 1, employing solvent-free optimized conditions (time and temperature reaction) under conventional heating, considering different reaction mixtures stated as each entry.
| Entry | AAE a | R1 | DC b | R2 | R3 | Time (min) | RT c,d (°C) | Product e | Yield (%) |
|---|---|---|---|---|---|---|---|---|---|
| 1 |
| Me |
| Me | Me | 30 | 100 |
| 81 |
| 2 |
| Et | Me | Me | 30 | 100 | 24 | ||
| 3 |
| Me | Me | 30 | 100 | 22 | |||
| 4 |
| Me | Me | 30 | 100 | 15 | |||
| 5 |
| Me |
| Me | OEt | 30 | 120 |
| 54 |
| 6 |
| Et | Me | OEt | 30 | 120 | 27 | ||
| 7 |
| Me | OEt | 30 | 120 | 25 | |||
| 8 |
| Me | OEt | 30 | 120 | 19 | |||
| 9 |
| Me |
| OH | OH | 30 | 170 |
| 45 |
| 10 |
| Et | OH | OH | 30 | 170 | 24 | ||
| 11 |
| OH | OH | 30 | 170 | 17 | |||
| 12 |
| OH | OH | 30 | 170 | 15 | |||
| 13 |
| Me |
| -(CH2)3- | 30 | 100 |
| 59 | |
| 14 |
| Et | -(CH2)3- | 30 | 100 | 27 | |||
| 15 |
| -(CH2)3- | 30 | 100 | 19 | ||||
| 16 |
| -(CH2)3- | 30 | 100 | 17 | ||||
a AAE = alkyl 2-aminoester (2); b DC = 1,3-dicarbonyl compound (3); c RT = reaction temperature; d RT was established by HPLC-MS in preliminary experiments for each reaction mixture on exploring heating at 100, 120 and 170 °C during 5 min, in order to evidence product formation and reactant consumption; e respective 2,4,5-trisubstituted-1H-pyrrol-3-ol-type compounds (1) (Scheme 1) as product for each reaction mixture.
Scheme 2A plausible mechanism for the synthesis of 2,4,5-trisubstituted-1H-pyrrol-3-ol type compounds 1.
Figure 1Optimized molecular structure of compound 1a using DFT-B3LYP calculations at the 6-31G(d,p) level.
Figure 2Frontier HOMO and LUMO representations for 2,4,5-trisubstituted-1H-pyrrol-3-ol-type compounds 1a–d and 2,4-dihydro-3H-pyrrol-3-ones 5a–d.
Calculated ΔG° for tautomeric conversion 5→1.
| Conversion | Calculated ΔG°/kcal/mol |
|---|---|
|
| −2.53 |
|
| −13.50 |
|
| −2.36 |
|
| −2.64 |