| Literature DB >> 21915197 |
Esther Vicente-García1, Rosario Ramón, Sara Preciado, Rodolfo Lavilla.
Abstract
The tetrahydroquinolines obtained through the Povarov multicomponent reaction have been oxidized to the corresponding quinoline, giving access to a single product through a two-step sequence. Several oxidizing agents were studied and manganese dioxide proved to be the reagent of choice, affording higher yields, cleaner reactions and practical protocols.Entities:
Keywords: Povarov; manganese dioxide; multicomponent reactions; oxidation; quinolines; tetrahydroquinolines
Year: 2011 PMID: 21915197 PMCID: PMC3170197 DOI: 10.3762/bjoc.7.110
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Povarov oxidation access to substituted quinolines.
Scheme 2Tetrahydroquinoline oxidation.
Scheme 3Synthesis of the Povarov adducts and their oxidation products.
Survey of different MnO2 reagents.
| entry | MnO2 trademark, characteristics (reagent code) | particle size (median diameter, d50, µm)a | reaction conditions | product ratios ( |
| 1 | Aldrich, reagent grade | 4.3 | 25 equiv of oxidant | 54/3/43 |
| 2 | Aldrich, reagent grade | 4.3 | pyridine (50 equiv) | 48/8/44 |
| 3 | Aldrich, reagent grade | 4.3 | 25 equiv of oxidant K2CO3 (6 equiv) | 37/6/57 |
| 4 | Aldrich, reagent grade | 4.3 | 55 °C for 14 h | 37/13/50 |
| 5 | Aldrich, reagent grade | 4.3 | rt for 48 h | 51/0/49 |
| 6 | Aldrich, reagent plus | 138.4 | general conditionsb | 100/0/0 |
| 7 | Aldrich, reagent plus | 138.4 | 110 °C for 14 h | 61/0/39 |
| 8 | Aldrich, activated | 4.2 | general conditionsb | 8/14/78 |
| 9 | Acros, powder | 7.6 | general conditionsb | 75/0/25 |
| 10 | Wako, 1st grade powder | 25.7 | general conditionsb | 0/100/0 |
aAll manganese dioxide samples were analyzed with a LSTM 13 320 series Laser diffraction particle size analyzer. For more details, see Supporting Information File 1. bUnless otherwise stated, the reactions were performed in toluene as the solvent, using 100 equiv of oxidant, 6 equiv of pyridine at 55 °C for 2 h.
Figure 1Optimization of the reaction conditions for the preparation of quinoline 18.
Scheme 4Oxidation of lactam-fused tetrahydroquinolines 20,20'.