| Literature DB >> 31683678 |
Hao Wu1, Liming Wang2, Junwei Zhang3, Ying Jin4.
Abstract
The enantioselective transformations of indoles preferentially take place in the more-reactive azole ring. However, the methods for the enantioselective functionalization of the indole benzene ring are scarce. In this paper, a series of bifunctional (thio)urea derivatives were used to organocatalyze the enantioselective Friedel-Crafts hydroxyalkylation of indoles with isatins. The resulting products were obtained in good yields (65-90%) with up to 94% enantiomer excess (ee). The catalyst type and the substrate scope were broadened in this methodology.Entities:
Keywords: enantioselective; hydroxyalkylation; hydroxyindoles; isatins; urea derivatives
Mesh:
Substances:
Year: 2019 PMID: 31683678 PMCID: PMC6864875 DOI: 10.3390/molecules24213944
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1(Thio)urea derivatives screened as organocatalysts (1a–1h).
Asymmetric hydroxyalkylation of 4-hydroxyindole with isatin a.
| Entry | Catalyst a | Yield (%) b | %ee c | Configuration d |
|---|---|---|---|---|
| 1 | 1a | 70 | 68 | R |
| 2 | 1b | 88 | 79 | R |
| 3 | 1c | 75 | 72 | S |
| 4 | 1d | 85 | 76 | S |
| 5 | 1e | - | - | - |
| 6 | 1f | 72 | 55 | S |
| 7 | 1g | 65 | 35 | S |
| 8 | 1h | 66 | 46 | S |
a Reaction conditions: isatin (0.1 mmol), 4-hydroxyindole (0.1 mmol), catalyst (0.01 mmol), and Et2O (1.5 mL) at rt. b Isolated yield. cDetermined by HPLC analysis (Chiralpak AD-H). dAbsolute configuration was determined according to the literature [52].
Screening of the reaction conditions for the asymmetric hydroxyalkylation a.
| Entry. | Solvent | Temperature | Catalyst. Amount (% mmol) | Yield (%) b | %ee c |
|---|---|---|---|---|---|
| 1 | Et2O | rt | 10 | 88 | 79 |
| 2 | DCM | rt | 10 | 69 | 32 |
| 3 | toluene | rt | 10 | 70 | 28 |
| 4 | THF | rt | 10 | 76 | 69 |
| 5 d | Et2O | rt | 10 | 79 | 74 |
| 6 | Et2O | rt | 5 | 79 | 77 |
| 7 | Et2O | rt | 20 | 91 | 76 |
| 8 | Et2O | 0 °C | 10 | 85 | 83 |
| 9 | Et2O | 0 °C | 20 | 83 | 80 |
| 10 | Et2O | −20 °C | 10 | 72 | 68 |
| 11 | Et2O | −40 °C | 10 | 68 | 73 |
a Reaction conditions: isatin (0.1 mmol), 4-hydroxyindole (0.1 mmol), catalyst 1b in solvent (1.5 mL). b Isolated yield. c Determined by HPLC analysis (Chiralpak AD-H). d Reaction performed in Et2O (3.0 mL).
Scope of the enantioselective hydroxyalkylation between 4-hydroxyindole and isatins a.
| Entry | R1, R2 | Product | Yield (%) b | %ee c |
|---|---|---|---|---|
| 1 | R1 = H, R2 = H, 2a | 3a | 85(70) d | 83(85) d |
| 2 | R1 = H, R2 = 4-Br, 2b | 3b | 65 | 50 |
| 3 | R1 = H, R2 = 5-Me, 2c | 3c | 85 | 85 |
| 4 | R1 = H, R2 = 5-OMe, 2d | 3d | 78 | 82 |
| 5 | R1 = H, R2 = 5-Cl, 2e | 3e | 92 | 94 |
| 6 | R1 = H, R2 = 5-Br, 2f | 3f | 80(69) d | 90(84) d |
| 7 | R1 = H, R2 = 6-Br, 2g | 3g | 83 | 71 |
| 8 | R1 = H, R2 = 7-F, 2h | 3h | 90 | 92 |
| 9 | R1 = H, R2 = 7-Cl, 2i | 3i | 81 | 84 |
| 10 | R1 = Me, R2 = H, 2j | 3j | 82(77) d | 78(80) d |
| 11 | R1 = Bn, R2 = H, 2k | 3k | 87(91) d | 74(90) d |
a Reaction conditions: isatin (0.1 mmol), 4-hydroxyindole (0.1 mmol), and catalyst (0.01 mmol) in Et2O (1.5 mL). bIsolated yield. c Determined by HPLC analysis (Chiralpak AD-H). d The data in parentheses are the ee values and yield in [52].
Figure 2Proposed stereochemical model.
Scheme 1Scope for the enantioselective hydroxyalkylation between different hydroxyindoles and isatin. Reaction conditions: hydroxyindole (0.1 mmol), isatin (0.1 mmol), 1b (10 mol %) in Et2O (1.5 mL) at 0 °C. Isolated yields after column chromatography. >20:1 regioselectivity determined by 1H NMR.