| Literature DB >> 26664630 |
Dimitra Kontokosta1, Daniel S Mueller1, Dong-Liang Mo1, Wiktoria H Pace1, Rachel A Simpson1, Laura L Anderson1.
Abstract
A Chan-Lam reaction has been used to prepare N-alkenyl-α,β-unsaturated nitrones, which undergo a subsequent thermal rearrangement to the corresponding tri- and tetrasubstituted pyridines. The optimization and scope of these transformations is discussed. Initial mechanistic experiments suggest a reaction pathway involving oxygen transfer followed by cyclization.Entities:
Keywords: Chan–Lam; copper; nitrone; oxygen transfer; pyridine
Year: 2015 PMID: 26664630 PMCID: PMC4660996 DOI: 10.3762/bjoc.11.226
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Use of a Chan–Lam reaction for the synthesis of tetrahydroquinolines and potential extension to pyridines [8].
Scheme 2Examples of pyridine synthesis from oxime precursors [51–52].
Optimization of Chan–Lam coupling for the synthesis of N-cyclohexenyl-α,β-unsaturated nitrones.a
| entry | catalyst | cat. conc | additive | yield (%)b |
| 1 | Cu(OAc)2 | 2 equiv | none | 40 |
| 2 | Cu(OAc)2 | 1 equiv | none | 46 |
| 3 | CuTC | 1 equiv | none | 30 |
| 4 | CuBr | 1 equiv | none | dec |
| 5 | CuI | 1 equiv | none | trace |
| 6 | CuOTf2 | 1 equiv | none | trace |
| 7 | Cu(TFA)2 | 1 equiv | none | trace |
| 8 | Cu(OAc)2 | 10 mol % | none | 45 |
| 9 | Cu(OAc)2 | 30 mol % | none | 45 |
| 10 | Cu(OAc)2 | 10 mol % | COE | 65 |
| 11 | Cu(OAc)2 | 10 mol % | NBD | 58 |
| 12 | Cu(OAc)2 | 10 mol % | COD | 72 |
| 13 | Cu(OAc)2 | 10 mol % | 1-octene | 57 |
| 14 | Cu(OAc)2 | 10 mol % | dba | 51 |
aConditions: 6a (1 equiv), 7a (2 equiv), pyridine (5 equiv), Na2SO4 (8–9 equiv), 0.1 M in DCE, 25 °C, air, 18 h. bDetermined by 1H NMR spectroscopy using CH2Br2 as a reference.
Scope of N-alkenyl-α,β-unsaturated nitrone synthesis.a
| entry | yield (%)b | entry | yield (%)b | ||
| 1 | 72c | 6 | 15d | ||
| 2 | 41c | 7 | 68d | ||
| 3 | 63c | 8 | 57d | ||
| 4 | 70e | 9 | 75d | ||
| 5 | 84c | 10 | 83d | ||
aConditions: 6 (1 equiv), 7 (2 equiv), pyridine (5 equiv), COD (1.2 equiv), Na2SO4 (8–9 equiv), 0.1 M in DCE, 25 °C, air, 18 h. bPercent isolated yield. cCu(OAc)2 (10 mol %). dCu(OAc)2 (1–2 equiv), pyridine (10 equiv), no COD. eCu(OAc)2 (10 mol %), no COD.
Scheme 3Solvent effect on conversion of N-alkenylnitrones to pyridines.
Scope of conversion of N-alkenyl-α,β-unsaturated nitrones to pyridines.a
| entry | yield (%)b | entry | yield (%)b | ||
| 1 | 71 | 6 | 50 | ||
| 2 | 68 | 7 | 36 | ||
| 3 | 64 | 8 | 87 | ||
| 4 | 76 | 9 | 71 | ||
| 5 | 43 | 10 | 65 | ||
aConditions: 8 (1 equiv), 4 Å MS, 0.1 M in DMSO, 140 °C, 6–8 h. bPercent isolated yield.
Scheme 4Mechanistic experiments.