| Literature DB >> 26977190 |
Qing He1, Gu Zhan1, Wei Du1, Ying-Chun Chen1.
Abstract
7-Azaisatin and 7-azaoxindole skeletons are valuable building blocks in diverse biologically active substances. Here 7-azaisatins turned out to be more efficient electrophiles than the analogous isatins in the enantioselective Morita-Baylis-Hillman (MBH) reactions with maleimides using a bifunctional tertiary amine, β-isocupreidine (β-ICD), as the catalyst. This route allows a convenient approach to access multifunctional 3-hydroxy-7-aza-2-oxindoles with high enantiopurity (up to 94% ee). Other types of activated alkenes, such as acrylates and acrolein, could also be efficiently utilized.Entities:
Keywords: 7-azaisatins; MBH reaction; bifunctional catalysis; maleimide; β-isocupreidine
Year: 2016 PMID: 26977190 PMCID: PMC4778495 DOI: 10.3762/bjoc.12.33
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Bioactive 7-azaisatins and their derivatives.
Screening conditions of the enantioselective MBH reaction of 1a and 2a.
| Entrya | Solvent | Temperature (°C) | Time (h) | Yield (%)b | ee (%)c | |
| 1 | 1.5 | toluene | 50 | 72 | 45 | 91 |
| 2 | 3.0 | toluene | 50 | 72 | 66 | 92 |
| 3 | 4.0 | toluene | 50 | 48 | 83 | 92 |
| 4 | 5.0 | toluene | 50 | 48 | 89 | 91 |
| 5 | 6.0 | toluene | 50 | 24 | 98 | 94 |
| 6 | 6.0 | MeCN | 50 | 24 | 98 | 86 |
| 7 | 6.0 | THF | 50 | 24 | 98 | 88 |
| 8 | 6.0 | CHCl3 | 50 | 96 | 90 | 91 |
| 9 | 6.0 | toluene | rt | 48 | 91 | 91 |
| 10 | 6.0 | toluene | 70 | 24 | 85 | 88 |
| 11d | 6.0 | toluene | 50 | >120 | – | – |
| 12 | 2.0 | CHCl3 | rt | 72 | 90 | 95 |
aUnless noted otherwise, reactions were performed with 1a (0.05 mmol), 2a and catalyst (0.01 mmol) in solvent (0.5 mL). bIsolated yield. cDetermined by HPLC analysis on a chiral stationary phase. dα-IC was used as the catalyst.
Substrate scope of the enantioselective MBH reaction.
| Entrya | R1 | R2 | R | Time (h) | Yield (%)b | ee (%)c |
| 1 | H | 24 | 94 | |||
| 2 | H | 24 | 90 | |||
| 3 | H | 24 | 92 | |||
| 4 | H | 24 | 79 | |||
| 5d | H | 24 | 92 | |||
| 6 | H | 24 | 89 | |||
| 7 | H | 24 | 89 | |||
| 8 | H | 24 | 66 | |||
| 9 | H | 24 | 61 | |||
| 10d | H | 24 | 91 | |||
| 11d | H | 48 | 87 | |||
| 12d | H | 96 | 71 | |||
| 13d | Ph | 24 | 92 | |||
| 14 | Cl | 48 | 85 | |||
| 15 | Br | 48 | 88 | |||
aUnless otherwise noted, all reactions were performed with 1 (0.1 mmol), 2 (0.6 mmol) and β-ICD (0.02 mmol) in toluene (1.0 mL) at 50 °C. bIsolated yield. cDetermined by HPLC analysis on a chiral stationary phase. The absolute configuration of the chiral products was assigned by analogy to Chimni’s work [13]. dIn a mixture of THF and DCM (0.5/0.5 mL).
Scheme 1Further exploration with 7-azaisatin 1a and comparison with the previous work by Zhou [5].