| Literature DB >> 29977388 |
Erwann Grenet1, Ashis Das1, Paola Caramenti1, Jérôme Waser1.
Abstract
The C-H indolation of heteroarenes was realized using the benziodoxolone hypervalent iodine reagents indoleBXs. Functionalization of the C-H bond in bipyridinones and quinoline N-oxides catalyzed by a rhodium complex allowed to incorporate indole rings into aza-heteroaromatic compounds. These new transformations displayed complete regioselectivity for the C-6 position of bipyridinones and the C-8 position of quinoline N-oxides and tolerated a broad range of functionalities, such as halogens, ethers, or trifluoromethyl groups.Entities:
Keywords: C–H activation; hypervalent iodine; indoleBX; indoles; pyridinones; rhodium catalysis
Year: 2018 PMID: 29977388 PMCID: PMC6009173 DOI: 10.3762/bjoc.14.102
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Bioactive compounds with pyridinone, quinolone and indole cores.
Scheme 1C–H functionalization of pyridinones and quinoline N-oxides.
Optimization of the C–H heteroarylationa,b.
| Entry | Changes from conditions | Yield (%) |
| 1 | [RhCp*Cl2]2 (2.5 mol %), | no reaction |
| 2 | – | 86 |
| 3 | without Zn(OTf)2 | no reaction |
| 4 | without AgSbF6 | 60 |
| 5 | under air atmosphere | 80 |
| 6 | 60 °C | 48 |
| 7 | 1 mol % of [RhCp*Cl2]2 | 75 |
| 8 | 1-methylindole ( | no reaction |
| 9 | 3-iodo-1-methylindole ( | 0c |
| 10 | iodonium salt | 0c |
aReactions conditions: 5 (0.20 mmol), 6 (0.20 mmol), [RhCp*Cl2]2 (3.7 mg, 6.0 µmol, 3 mol %), AgSbF6 (10.3 mg, 30.0 µmol, 0.15 equiv), Zn(OTf)2 (10.9 mg, 30.0 µmol, 0.15 equiv), methanol (2.0 mL) at 80 °C for 12 h. bIsolated yield after preparative TLC. cDecomposition.
Scheme 2Scope and limitations of the Rh-catalyzed C–H activation of [1,2'-bipyridin]-2-one.
Scheme 3Scope of the Rh-catalyzed peri C–H activation of quinoline N-oxides.
Scheme 4Product modifications.