| Literature DB >> 29861974 |
Susumu Oda1, Jana Franke1, Michael J Krische1.
Abstract
Under the conditions of ruthenium catalyzed transfer hydrogenation using 2-propanol as terminal reductant, 1,3-dienes engage in reductive C-C coupling with formaldimines obtained in situ from 1,3,5-tris(aryl)-hexahydro-1,3,5-triazines to form homoallylic amines. Deuterium labelling studies corroborate a mechanism involving reversible diene hydroruthenation to form an allylruthenium complex that engages in turn-over limiting imine addition. Protonolysis of the resulting amidoruthenium species releases product and delivers a ruthenium alkoxide, which upon β-hydride elimination closes the catalytic cycle. These transformations, which include enantioselective variants, represent the first examples of diene hydroaminomethylation.Entities:
Year: 2015 PMID: 29861974 PMCID: PMC5950558 DOI: 10.1039/c5sc03854e
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Hydroaminomethylation via carbonylation or 2-propanol mediated reductive coupling.
Selected optimization experiments in the ruthenium catalyzed hydroaminomethylation of butadiene 1avia 2-propanol mediated transfer hydrogenation
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| Entry | Ligand |
| Time (h) | Yield |
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| 1 | — | 120 | 24 | 11% | >20 : 1 |
| 2 | PCy3 | 120 | 24 | 10% | >20 : 1 |
| 3 | dppf | 120 | 24 | 19% | >20 : 1 |
| 4 | dppm | 120 | 24 | 34% | 4 : 1 |
| 5 | dppe | 120 | 24 | 81% | 4 : 1 |
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| 7 | dCype | 120 | 24 | 71% | 20 : 1 |
| 8 | dCypm | 110 | 24 | 65% | 10 : 1 |
| 9 | dCypm | 140 | 24 | 82% | 8 : 1 |
| 10 | dCypm | 120 | 12 | 74% | 10 : 1 |
Yields are of material isolated by silica gel chromatography. Isomeric ratios were determined via1H NMR analysis. PMP = para-methoxyphenyl, dppf (1,1′-bis(diphenylphosphino)ferrocene), dppm (bis(diphenylphosphino)methane), dppe (1,2-bis(diphenylphosphino)ethane), dCypm (bis(dicyclohexylphosphino)methane), dCype (1,2-bis(dicyclohexylphosphino)ethane).
PCy3 (10 mol%). See ESI† for further details.
Ruthenium catalyzed hydroaminomethylation of 1,3-dienes 1a–1i to form homoallylic amines 3a–3ivia 2-propanol mediated transfer hydrogenation
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| Entry | 1,3-Diene | Product | Yield ( |
| 1 |
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| 86% yield 10 : 1 ( |
| 2 |
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| 79% yield >20 : 1 ( |
| 3 |
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| 76% yield >20 : 1 ( |
| 4 |
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| 71% yield, 2 : 1 dr >20 : 1 ( |
| 5 |
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| 74% yield >20 : 1 ( |
| 6 |
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| 70% yield >20 : 1 ( |
| 7 |
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| 77% yield >20 : 1 ( |
| 8 |
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| 72% yield >20 : 1 ( |
| 9 |
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| 81% yield >20 : 1 ( |
Yields are of material isolated by silica gel chromatography. Isomeric ratios were determined via1H NMR analysis.
PhMe (0.5 M), 120 °C. See ESI† for further experimental details.
Scheme 2Conversion of hydroaminomethylation products 3b and 3i to compounds 4b and 4i, respectively. aYields are of material isolated by silica gel chromatography. (a) (HO)2CCO2H, MeCN–H2O, 25 °C, 80% yield, 10 : 1 dr (b) BrCH2CHCH2, K2CO3, DMF, 25 °C, 75% yield. (c) Grubbs-II, DCM, 40 °C, 72% yield. See ESI† for further experimental details.
Ruthenium catalyzed hydroaminomethylation of butadiene 1a with 1,3,5-tris(aryl)-hexahydro-1,3,5-triazines 2a–2f to form homoallylic amines 3a–8a
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Yields are of material isolated by silica gel chromatography. Isomeric ratios were determined via1H NMR analysis. See ESI† for further experimental details.
Scheme 3Enantioselective ruthenium catalyzed hydroaminomethylation of butadiene 1a and isoprene 1b. aYields are of material isolated by silica gel chromatography. Enantiomeric ratios were determined by chiral stationary phase HPLC analysis. bXylene (0.5 M), 140 °C. See ESI† for further experimental details.
Scheme 4Deuterium labelling studies of the ruthenium catalyzed hydroaminomethylation of isoprene 1b. aYields are of material isolated by silica gel chromatography. bXylene (0.5 M), 140 °C. See ESI† for further experimental details.
Scheme 5General mechanism for ruthenium catalyzed diene hydroaminomethylation via transfer hydrogenation.