| Literature DB >> 35424823 |
Nalladhambi Neerathilingam1, Ramasamy Anandhan1.
Abstract
An efficient synthesis of imides using metal-free photoredox-catalyzed direct α-oxygenation of N,N'-disubstituted anilines in the presence of 9-mesityl-10-methylacridinium [Acr+-Mes]BF4 as a photoredox catalyst and molecular oxygen as a green oxidant under visible light was developed. This photochemical approach offered operational simplicity, high atom economy with a low E-factor, and functional group tolerance under mild reaction conditions. Control and quenching experiments confirmed the occurrence of a radical pathway and superoxide radical anion α-oxygenation reactions, and also provided strong evidence for the reductive quenching of [Acr+-Mes]BF4 based on a Stern-Volmer plot, which led to the proposed mechanism of this reaction. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35424823 PMCID: PMC8984950 DOI: 10.1039/d2ra00585a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Various strategies involving α-oxygenation reactions of amides and amines for synthesizing imides.
Optimization of the α-oxygenation of N,N-dibenzylaniline (1a) to N-benzoyl-N-phenylbenzamide (2a)a
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|---|---|---|---|---|---|---|
| Entry | Light source (nm) | PC | Additive | Solvent | Yields | |
| 2a | 2a′ | |||||
| 1 | 456 (44 W) | — | — | Acetone | 20 | 32 |
| 2 | 456 (44 W) | — | — | ACN | 10 | 25 |
| 3 | 456 (44 W) | — | — | Toluene | 0 | 0 |
| 4 | 456 (44 W) | — | — | DMSO | 0 | 0 |
| 5 | 370 (43 W) | — | — | Acetone | 15 | 15 |
| 6 | 390 (52 W) | — | — | Acetone | 15 | 22 |
| 7 | 467 (44 W) | — | — | Acetone | Trace | 15 |
| 8 | 525 (44 W) | — | — | Acetone | 0 | 10 |
| 9 | 456 (44 W) | MB | — | Acetone | Trace | 35 |
| 10 | 456 (44 W) | Eosin Y | — | Acetone | 9 | 23 |
| 11 | 456 (44 W) | [Acr+-Mes]BF4 | — | Acetone | 41 | 8 |
| 12 | 456 (44 W) | [Acr+-Mes]BF4 | AcOH | Acetone | 75 | 0 |
| 13 | 456 (44 W) | [Acr+-Mes]BF4 | H2SO4 | Acetone | 0 | 0 |
| 14 | 456 (44 W) | [Acr+-Mes]BF4 | PTSA | Acetone | 0 | 0 |
| 15 | 456 (44 W) | [Acr+-Mes]BF4 | AcOH | Acetone | 50 | 0 |
| 16 | 456 (44 W) | [Acr+-Mes]BF4 | AcOH | Acetone | n.r. | n.r. |
| 17 | [Acr+-Mes]BF4 | AcOH | Acetone | n.r. | n.r. | |
Reaction conditions: for each experiment, a mixture of 1a (0.36 mmol), additive (1.8 mmol), and PC (5 mol%) in 8 mL of solvent was irradiated with blue LED light under an O2 atmosphere at rt.
Isolated yields.
Reaction was performed under air.
Reaction was performed under N2.
Reaction was performed in the dark. Abbreviations: n.r. = no reaction, PC = photocatalyst, MB = methylene blue, [Acr+-Mes]BF4 = 9-mesityl-10-methylacridinium tetrafluoroborate, AcOH = acetic acid, and PTSA = p-toluenesulfonic acid.
Scheme 2Testing of various R1 substituents on N,N-dibenzylanilines for the imide-producing reaction. Reaction conditions: for each experiment, a mixture of an aniline (1a–n, 0.36 mmol), AcOH (1.8 mmol), and [Acr+-Mes]BF4 (5 mol%) in 8 mL acetone was irradiated with blue LED456nm light under O2 at rt for 1 h. Yields were determined after purification.
Scheme 3Testing of various R2 substituents on N,N-dibenzylanilines for the imide-producing reaction. Reaction conditions: for each experiment, a mixture of an aniline (3a–h, 0.36 mmol), AcOH (1.8 mmol), and [Acr+-Mes]BF4 (5 mol%) in 8 mL of acetone was irradiated with blue LED456nm light under O2 at rt for 1 h. Yields were determined after purification.
Scheme 4Gram-scale synthesis of imide 2a.
Evaluation of green chemistry metrics for the synthesis of 2a
| Reactant | 1a | 1.3 g | 5 mmol | FW 273.38 |
| Acid | AcOH | 1.5 g | 25 mmol | FW 60.05 |
| Solvent | Acetone | 25.51 | — | — |
| Recycled solvent | Acetone | 15.75 | — | — |
| Product | 2a | 0.97 g | 3.22 mmol | FW 301.35 |
Scheme 5Control and quenching experiments.
Fig. 1Electron spin resonance (ESR) spectra of a solution of DMPO (20 μL) with 1a (0.36 mmol), AcOH (1.8 mmol), and [Acr+-Mes]BF4 (5 mol%) in 8 mL acetone under O2 at rt and (a) with blue LED456nm irradiation for 5 minutes and (b) without blue LED456nm irradiation.
Fig. 2Absorption-emission spectrum of [Acr+-Mes]BF4 in acetone.
Fig. 3Stern–Volmer plot for oxygenation of N,N-dibenzylaniline 1a.
Scheme 6A plausible mechanism of α-oxygenation for the synthesis of imides.