| Literature DB >> 30332524 |
Christopher J Teskey1, Pauline Adler1, Carlos R Gonçalves1, Nuno Maulide1.
Abstract
We report a method for the selective α,β-dehydrogenation of amides in the presence of other carbonyl moieties under mild conditions. Our strategy relies on electrophilic activation coupled to in situ selective selenium-mediated dehydrogenation. The α,β-unsaturated products were obtained in moderate to excellent yields, and their synthetic versatility was demonstrated by a range of transformations. Mechanistic experiments suggest formation of an electrophilic SeIV species.Entities:
Keywords: amide activation; dehydrogenation; hypervalent iodine; seleninic acid; triflic anhydride
Year: 2018 PMID: 30332524 PMCID: PMC6348382 DOI: 10.1002/anie.201808794
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1Approaches to amide dehydrogenation and work presented herein. DIPEA=diisopropylethylamine, 2‐I‐pyr=2‐iodopyridine, LiCyan=lithium N‐cyclohexyl anilide, TFA=trifluoroacetate, Tf2O=triflic anhydride.
Optimization of the reaction.
| Entry | [Se] | Base | Oxidant | Yield [%][a] | |||
|---|---|---|---|---|---|---|---|
| (equiv) | (equiv) | (equiv) |
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| 1 | PhSeO2H (1) | Ag2CO3 (1.1) | – | 48 | 20 | – | 41 |
| 2 | PhSeO2H (1) | Et3N (1.1) | – | – | 24 | 50 | 14 |
| 3 | PhSeO2H (1) | Et3N (2.2) | PIDA (2.2) | 22 | 12 | – | 25 |
| 4 | PhSeO2H (1) | Et3N (2.2) | IBX (2.2) | 29 | 45 | – | 21 |
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| 6 | – | Et3N (2.2) | DMP (2.2) | 8 | 2 | – | 50 |
[a] Yields determined by 1H NMR analysis with bromoform as an internal standard. 1,2‐DCE=1,2‐dichloroethane, PIDA=iodobenzene diacetate.
Scheme 2Scope of amide dehydrogenation. [a] On 1 mmol scale. [b] Reaction carried out at −20 °C. [c] Reaction carried out at −10 °C. [d] On 4.2 mmol scale. DCM=dichloromethane.
Scheme 3Derivatisation of products and application of the method. [a] NMR yield. NMO=N‐methylmorpholine N‐oxide.
Scheme 4Mechanistic experiments.