| Literature DB >> 27340453 |
José M Andrés1, Miriam Ceballos1, Alicia Maestro1, Isabel Sanz1, Rafael Pedrosa1.
Abstract
The catalytic activity of different supported bifunctional thioureas on sulfonylpolystyrene resins has been studied in the nitro-Michael addition of different nucleophiles to trans-β-nitrostyrene derivatives. The activity of the catalysts depends on the length of the tether linking the chiral thiourea to the polymer. The best results were obtained with the thiourea derived from (L)-valine and 1,6-hexanediamine. The catalysts can be used in only 2 mol % loading, and reused for at least four cycles in neat conditions. The ball milling promoted additions also worked very well.Entities:
Keywords: bifunctional organocatalysts; organocatalysis; stereoselective nitro-Michael addition; supported catalysts; thioureas
Year: 2016 PMID: 27340453 PMCID: PMC4902052 DOI: 10.3762/bjoc.12.61
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Parent and supported bifunctional thioureas used in this work.
Scheme 1Reaction of nitrostyrene with diethyl malonate and 2-ethoxycarbonyl cyclopentanone.
Screening of catalysts and optimization of the reaction conditions for the additions of diethyl malonate and ethyl 2-oxocyclopentanecarboxylate to β-nitrostyrene.
| Entrya | Catal. (mol %) | Solvent | Product yieldb (%) | drc | erd | ||
| 1 | neat | rt | 24 | – | 92:8 | ||
| 2 | neat | rt | 120 | – | 78:22 | ||
| 3 | neat | rt | 120 | – | 85:15 | ||
| 4 | neat | rt | 16 | – | 91:9 | ||
| 5 | neat | rt | 24 | – | 90:10 | ||
| 6 | neat | rt | 16 | – | 89:11 | ||
| 7 | neat | rt | 16 | – | 94:6 | ||
| 8 | neat | rt | 1 | 95:5 | 95:5 | ||
| 9 | neat | rt | 4 | 89:11 | 90:10 | ||
| 10 | neat | rt | 8 | 87:13 | 92:8 | ||
| 11 | neat | rt | 4 | 88:12 | 95:5 | ||
| 12 | neat | rt | 7 | 88:12 | 95:5 | ||
| 13 | neat | rt | 0.5 | 89:11 | 95:5 | ||
| 14 | neat | rt | 2 | 89:11 | 95:5 | ||
| 15 | neat | rt | 1 | 89:11 | 95:5 | ||
| 16 | neat | 0 | 24 | 90:10 | 94:6 | ||
| 17g | neat | rt | 8 | 88:12 | 94:6 | ||
| 18h | neat | rt | 2.5 | 88:12 | 94:6 | ||
| 19 | CH2Cl2 | rt | 1 | 90:10 | 93:7 | ||
| 20 | PhMe | rt | 5 | 89:11 | 94:6 | ||
| 21 | THF | rt | 1.5 | 89:11 | 94:6 | ||
| 22 | MeCN | rt | 1.5 | 89:11 | 95:5 | ||
| 23 | MeCN | 0 | 8 | 88:12 | 95:5 | ||
| 24g | MeCN | rt | 8 | 89:11 | 92:8 | ||
aReaction performed with 2 equiv of nucleophile at room temperature. bYields refer to isolated compounds. cDetermined by 1H NMR in the reaction mixture. dDetermined by chiral HPLC. e13% of unreacted nitrostyrene was recovered. f15% of unreacted nitrostyrene was recovered. gReaction performed with 1.1 equiv of ketoester. hReaction performed with 1.5 equiv of ketoester.
Scheme 2Reaction of nitrostyrenes with malonates and β-diketones.
Addition of malonates and β-diketones to nitrostyrenes catalyzed by IV and V.
| Entrya | Reagents | Catal. (mol %) | Product yieldb (%) | drc | erd | Config. | |
| 1 | 6 | – | 83:17 | ( | |||
| 2 | 48 | – | 86:14 | ( | |||
| 3 | 72 | – | 89:11 | ( | |||
| 4 | 36 | – | 92:8 | ( | |||
| 5 | 48 | – | 92:8 | ( | |||
| 6 | 5 | – | 89:11 | ( | |||
| 7 | 6 | – | 93:7 | ( | |||
| 8 | 7 | 75:25 | 92:8 | (2 | |||
| 9 | 2 | – | 91:9 | ( | |||
| 10 | 8 | – | 91:9 | ( | |||
| 11 | 2 | – | 91:9 | ( | |||
| 12 | 2 | – | 92:8 | ( | |||
| 13 | 3 | – | 93:7 | ( | |||
| 14 | 6 | 74:26 | 94:6 | (2 | |||
aReaction performed with 2 equiv of nucleophile. bYields determined after chromatographic purifications. cDiastereomeric excess determined by 1H NMR of the crude reaction mixture. dEnantiomeric ratio determined by chiral HPLC analysis.
Scheme 3Reaction of nitrostyrenes with β-keto esters and β-dicarbonyl compounds.
Reaction of nitrostyrenes with β-substituted cycloalkanones catalyzed by V.
| Entrya | Reagents | Catal. (mol %) | Product Yieldb (%) | drc | erd | Config. | |
| 1 | 0.5 | 89:11 | 95:5 | ( | |||
| 2 | 1 | 90:10 | 94:6 | ( | |||
| 3 | 5 | 89:11 | 93:7 | ( | |||
| 4 | 9 | 89:11 | 95:5 | ( | |||
| 5 | 1 | 89:11 | 95:5 | ( | |||
| 6 | 96 | 88:12 | 96:4 | ( | |||
| 7 | 10 | 88:12 | 96:4 | ( | |||
| 8 | 24 | 82:18 | 96:4 | ( | |||
| 9 | 2 | 83:17 | 93:7 | ( | |||
| 10 | 1 | 70:30 | 92:8 | ( | |||
| 11e | 1 | 88:12 | 94:6 | ( | |||
| 12f | 1 | 88:12 | 95:5 | ( | |||
| 13g | 2 | 88:12 | 94:6 | ( | |||
aReaction performed with 2 equiv of nucleophile. bYields determined after chromatographic purifications. cDiastereomeric excess determined by 1H NMR of the crude reaction mixture. dEnantiomeric ratio determined by chiral HPLC analysis. eSecond cycle for entry 1 by using only 1.5 equivalents of nucleophile. fThird cycle for entry 1 by using only 1.5 equivalents of nucleophile. gFourth cycle for entry 1 by using only 1.5 equivalents of nucleophile.
Scheme 4Reaction of nitrostyrenes with α-nitrocyclohexanone and ethyl α-nitropropionate.
Reactions of nitrostyrenes with α-nitrocyclohexanone and ethyl α-nitropropionate.
| Entrya | Reagents | Catal. (mol %) | Solvent | Product yieldb (%) | drc | erd | |
| 1 | 3 | DCM | >98:<2 | 84:16 | |||
| 2 | 1.5 | neat | >98:<2 | 90/10 | |||
| 3e | 1 | neat | >98:<2 | 90:10 | |||
| 4 | 48 | DCM | >98:<2 | 90:10 | |||
| 5 | 12 | MeCN | >98:<2 | 91:9 | |||
| 6e | 12 | neat | >98:<2 | 94:6 | |||
| 7 | 24 | DCM | >98:<2 | 85:15 | |||
| 8f | 48 | DCM | >98:<2 | 92:8 | |||
| 9 | 8 | MeCN | >98:<2 | 91:9 | |||
| 10e | 48 | neat | >98:<2 | 90:10 | |||
| 11 | 24 | MeCN | >98:<2 | 89:11 | |||
| 12e | 360 | neat | >98:<2 | 87:13 | |||
| 13 | 1 | neat | 74:26 | 69:31 | |||
| 14f | 6 | neat | 75:25 | 72:28 | |||
| 15 | 5 | neat | 76:24 | 74:26 | |||
aReaction performed with 1.5 equiv of nucleophile. bYields determined after chromatographic purifications. cDiastereomeric excess determined by 1H NMR of the crude reaction mixture (>98:<2 means that a single diastereomer was detected). dEnantiomeric ratio determined by chiral HPLC analysis. eBall mill conditions. fThe reaction was carried out at −20 °C. g37% of 2-nitrocyclohexanone was recovered unreacted. h30% of 2-nitrocyclohexanone was recovered unreacted.