| Literature DB >> 30155036 |
Patricia García-Domínguez1, Lorenz Fehr1, Giulia Rusconi1, Cristina Nevado1.
Abstract
Methods to incorporate atmospheric CO2 into organic molecules are on demand. Here we present two Pd-catalyzed multicomponent reactions that provide functionalized oxazolidinones from propargylamines, aryl halides and CO2 as starting materials. These transformations, devoid of high CO2 pressures, represent a streamlined stereocontrolled synthesis of previously inaccessible versions of these useful heterocycles in an atom-economic manner, as up to four new single bonds are formed in a single synthetic operation.Entities:
Year: 2016 PMID: 30155036 PMCID: PMC6013789 DOI: 10.1039/c6sc00419a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Synthesis of oxazolidinones from propargylamines.
Optimization of the reaction conditions for carboxylative cyclization and cross-coupling reaction of propargylamine 1 and iodobenzene 2a
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| Entry | Solvent | NaO |
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| Yield |
| 1 | THF | 3 | 40 | 22 | 34 |
| 2 | THF | 3 | 40 | 44 | 47 |
| 3 | DMF | 3 | 40 | 44 | 57 |
| 4 | DCE | 3 | 40 | 44 | Traces |
| 5 | DMSO | 3 | 40 | 44 | 89 |
| 6 | DMSO | 1.5 | 40 | 44 | 94 |
| 7 | DMSO | 1.1 | 40 | 44 | 97 |
| 8 | DMSO | 1.1 | 40 | 22 | 87 |
| 9 | DMSO | 1.1 | r.t. | 22 | 72 |
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The reactions were performed in a Schlenk tube directly connected to a bottle of CO2. The pressure was fixed with a manometer.
Yields of isolated products after column chromatography on silica gel.
The same result was obtained when MeCN or MeNO2 were used as solvents. [PdCl2(dppf)] = dichloro[1,1′-bis-(diphenylphosphino)-ferrocene]palladium(ii).
Scheme 2Scope for the carboxylative cyclization and cross-coupling reaction of propargylamines and aryl iodides. Yields of isolated products after column chromatography on silica gel are given. The reaction was performed with 1.1 equiv. of base. Yields obtained using [Pd] 2.5 mol%. The reaction was run for 3 days.
Optimization of the reaction conditions for the Sonogashira-carboxylative cyclization and cross-coupling reaction of propargylamine 14 and iodobenzene 2a
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| Entry | Solvent | Cu cat. (mol%) | Base (equiv.) |
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| 1 | DMSO | CuI (10) | NaO | 37 |
| 2 | DMSO | CuI (10) | DBU (3) | — |
| 3 | DMSO | CuI (10) | Quinuclid. (3) | 63 |
| 4 | DMSO | CuI (10) | BEMP (3) | 70 (65) |
| 5 | DMSO | CuI (10) | DABCO (3) | 70 (64) |
| 6 | DMSO | CuI (5) | DABCO (2.6) | 67 (65) |
| 7 | DMSO | CuTC (5) | DABCO (2.6) | 68 |
| 8 | DMSO | CuOAc (5) | DABCO (2.6) | 70 |
| 9 | DMSO | Cu-3-Me-salicyl (5) | DABCO (2.6) | 72 |
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The reactions were performed in a Schlenk tube directly connected to a bottle of CO2. The pressure was fixed with a manometer.
Yield determined by 1H-NMR spectroscopy using 1,2-dibromoethane as the internal standard. In brackets, isolated yields after column chromatography on silica gel.
The by-product 7a could be isolated in a significant amount.
Concentration = 0.1 M. DABCO = 1,4-diazabicyclo[2.2.2]octane. DBU = 1,8-diazabicyclo[5.4.0]undec-7-ene. BEMP = 2-tert-butylimino-2-diethylamino-1,3-dimethylperhydro-1,3,2-diazaphosphorine.
Scheme 3Scope for the Sonogashira-carboxylative cyclization and cross-coupling reaction of propargylamines and aryl iodides. Isolated yields after column chromatography are given. In brackets, yields determined by 1H-NMR spectroscopy using 1,2-dibromoethane as the internal standard. The reaction was performed with a 0.5 M concentration.
Scheme 4Control experiments. Isolated yields after column chromatography are given. Yield determined by 1H-NMR spectroscopy using 1,2-dibromoethane as the internal standard.
Scheme 5Mechanistic proposal.