| Literature DB >> 35494431 |
Rohit B Kamble1,2, Kishor D Mane1,2, Bapurao D Rupanawar1,2, Pranjal Korekar3, A Sudalai1,2, Gurunath Suryavanshi1,2.
Abstract
A new heterogeneous catalytic system (Ti-superoxide/saccharin/TBHP) has been developed that efficiently catalyzes oxidative amidation of aldehydes to produce various primary amides. The protocol employs saccharin as amine source and was found to tolerate a wide range of substrates with different functional groups. Moderate to excellent yields, catalyst reusability and operational simplicity are the main highlights. A possible mechanism and the role of the catalyst in oxidative amidation have also been discussed. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35494431 PMCID: PMC9047451 DOI: 10.1039/c9ra10413e
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Some biologically important primary amides.
Scheme 1Primary amide synthesis via direct oxidative amidation of aldehydes or methyl arenes.
Optimization of oxidative amidation of anisaldehyde with saccharin as amine source over Ti-superoxidea
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| No. | Cat | Oxidant (equiv.) | Solvent |
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| Yield |
| 1 | 10 | TBHP (1) | DCE | 25 | 12 | N R |
| 2 | 10 | TBHP (2) | DCE | 90 | 12 | 19 (22) |
| 3 | 10 | TBHP (3) | 1,4-Dioxane | 90 | 12 | 41 (22) |
| 4 | 20 | TBHP (3) | 1,4-Dioxane | 90 | 12 | 65 (71) |
| 5 | 20 | TBHP (3) | 1,4-Dioxane | 90 | 1 | 95 (51) |
| 6 | 20 | DTBP (3) | 1,4-Dioxane | 90 | 1 | N R |
| 7 | 20 | 30% H2O2 (3) | 1,4-Dioxane | 90 | 1 | 11 |
Reaction conditions: anisaldehyde (1 mmol), saccharin (1.2 mmol), solvent (4 mL).
Titanium superoxide.
Isolated yield.
5−6 M TBHP in hexane was used.
1,2-Dichloroethane.
3 equiv. of TBHP was used.
Temperature was 110 °C.
Time was 8 h.
Time was 4 h.
2 equiv. of TBHP was used.
Di-tert-butylperoxide.
Substrate scope for the oxidative amidation of aldehydesa
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Reaction conditions: aldehyde (1 mmol), saccharin (1.2 mmol), 5–6 M TBHP in hexane (3 mmol), Ti-superoxide (20 wt%), 1,4-dioxane (4 mL), 90 °C, 1 h.
Isolated yield.
Scheme 2Mechanistic studies to establish the involvement of radical pathway.
Scheme 3Catalytic cycle for the oxidative amination of aldehydes.
Scheme 4Synthesis of moclobemide on 5 g scale.
Fig. 2Reusability studies of Ti catalyst. Reaction conditions: anisaldehyde (2 mmol), saccharin (2.4 mmol), TBHP (6 mmol), 1,4-dioxane, 90 °C, 1 h; isolated yiled.