| Literature DB >> 35519497 |
Ignacio D Lemir1, Willber D Castro-Godoy1, Adrián A Heredia1, Luciana C Schmidt1, Juan E Argüello1.
Abstract
A novel and sustainable procedure was developed for the synthesis of 3-selenylindoles employing diorganyl diselenides and indoles or electron-rich arenes as starting materials. Visible blue light was used to promote the reaction without employing transition metal complexes or organic photocatalysts as sensitizers. Additives such as strong oxidants or bases were not required. Moreover, ethanol was employed as a benign solvent under mild reaction conditions. Through this easy and eco-friendly approach, several 3-selenylindoles and a number of asymmetric diarylselenides were obtained in good to excellent isolated yields. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35519497 PMCID: PMC9067025 DOI: 10.1039/c9ra03642c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Synthesis of 3-chalcogenylindole employing visible light.
Optimization and control reactionsa
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| Entry | Solvent | Atm. | Time (h) | Yield |
| 1 | Toluene | Air | 24 | 9 |
| 2 | THF | Air | 24 | 54 |
| 3 | DMSO | Air | 24 | 23 |
| 4 | DMF | Air | 24 | 52 |
| 5 | EtOAc | Air | 24 | 84 |
| 6 | DCM | Air | 24 | 56 |
| 7 | Acetone | Air | 24 | 91 |
| 8 | PEG200 | Air | 24 | 20 |
| 9 | Glycerol | Air | 24 | 5 |
| 10 | Water | Air | 24 | 57 |
| 11 | Methanol | Air | 24 | 100 |
| 12 | Ethanol | Air | 24 | 100 |
| 13 | Ethanol | Air | 24 | 0 |
| 14 | Ethanol | Nitrogen | 24 | 20 |
| 15 | Ethanol | Oxygen | 24 | 100 |
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| 17 | Ethanol | Oxygen | 18 | 100 |
| 18 | Ethanol | Air | 12 | 61 |
| 19 | Ethanol | Oxygen | 12 | 94 |
Reaction conditions: 1a (0.15 mmol), 2a (0.75 equiv.), solvent (2 mL) at room temperature irradiated with 3 W blue LED (467 nm).
Yields obtained by GC using internal standard method.
Reaction performed under dark.
0.5 equiv. of 2a were used.
Isolated yield.
Scheme 2Synthesis of 3-selenylindoles using visible light.Reaction conditions: 1 (0.15 mmol) and 2 (0.5 equiv.) in ethanol (2 mL) irradiated for 18 h with 3 W blue LED (467 nm) at room temperature under air atmosphere. Isolated yields. Reaction irradiated for 36 h.
Scheme 3Photoinduced arylselenation of electron-rich arenes.Reaction conditions: 4 (0.15 mmol) and 2a (0.5 equiv.) in ethanol (2 mL) irradiated for 18 h with 3 W blue LED (467 nm) at room temperature under air atmosphere. Isolated yields. Reaction performed with 1 equiv. of 2a, irradiated for 36 h.
Fig. 1Absorption spectra of diselenides (0.06 mM) and indole (0.06 mM) in ethanol, and blue LED emission. Inset: zoom from 360 to 440 nm spectrum zone.
Fig. 2Profile of switching on–off experiment by following indole conversion along light on–off periods of time.
Scheme 4Control reactions.
Scheme 5Proposed mechanisms for the synthesis of selenium compounds.