| Literature DB >> 26124864 |
Sergey Tin1, Tamara Fanjul2, Matthew L Clarke1.
Abstract
In the hydrogenation of sluggish unactivated enamine substrates, Rh complexes of electron-deficient phosphines are demonstrated to be far more reactive catalysts than those derived from triphenylphosphine. These operate at low catalyst loadings (down to 0.01 mol %) and are able to reduce tetrasubstituted enamines. The use of the sustainable and environmentally benign solvent (R)-limonene for the reaction is also reported with the amine isolated by acid extraction.Entities:
Keywords: alkenes; homogeneous catalysis; hydrogenation; renewable solvents; tertiary amines
Year: 2015 PMID: 26124864 PMCID: PMC4464316 DOI: 10.3762/bjoc.11.70
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Synthesis of enamines from ketones with percentage yields.
Scheme 2Branched-selective intramolecular hydroaminovinylation (60% isolated yield of 1j).
Scheme 3Conversion of 1e to 2e using ligands 4–9.
Hydrogenation of enamines with Rh catalysts of PPh3 vs ligand 8.
| Entrya | Enamine | Ligand | Time, h | Amine, %b |
| 1 | 16 | <1 | ||
| 2 | 16 | 1 | ||
| 3 | 16 | 2 | ||
| 4 | 16 | 77 | ||
| 5 | 24 | 90 | ||
| 6c | 24 | >99 | ||
| 7 | 24 | <1 | ||
| 8 | 24 | 67 | ||
| 9 | 16 | 6 | ||
| 10 | 16 | >99 | ||
| 11d | 16 | 10 | ||
| 12 | 16 | 35 | ||
| 13 | 16 | >99 | ||
| 14 | 16 | 57 | ||
| 15 | 16 | >99 | ||
| 16 | 16 | 98 | ||
| 17 | 16 | >99 | ||
| 18e | 16 | 5 | ||
| 19e | 16 | 23 | ||
| 20 | 16 | >99 | ||
| 21 | 16 | >99 | ||
| 22e | 16 | 14 | ||
| 23e | 16 | 64 | ||
| 24 | 16 | >99 | ||
| 25 | 16 | >99 | ||
| 26e | 16 | 15 | ||
| 27e | 16 | 70 | ||
| 28f | 90 | 83 | ||
| 29f | 66 | 91 | ||
| 30g | 16 | >99 | ||
| 31 | 16 | 54 | ||
| 32 | 16 | >99 | ||
aGeneral conditions: 1 mmol of enamine, 0.2 mol % of [Rh(COD)Cl]2, 0.8 mol % ligand, 0.1 mL of 1-methylnaphthalene as an internal standard, 60 bar of H2 gas, toluene as a solvent. bDetermined by 1H NMR relative to 1-methylnaphthalene. cCatalyst loading doubled. d30 equivalents of pyridine relative to Rh were added. e0.025 mol % of [Rh(COD)Cl]2, 0.1 mol % of ligand. f0.01 mol % of [Rh(COD)Cl]2, 0.04 mol % of ligand; scale is 10.0 mmol of enamine. gPressure of H2 = 5 bar; scale is 2.0 mmol of enamine.
Hydrogenation of enamine 1e in toluene and methanol as solvents.
| Entrya | Solvent | Ligand | Amine, %b |
| 1 | toluene | 4 | |
| 2 | toluene | 93 | |
| 3 | methanol | 43 | |
| 4 | methanol | 57 | |
aGeneral conditions: 5.0 mmol of 1e, 0.08 mol % of [Rh(COD)Cl]2, 0.32 mol % ligand, 0.5 mL of 1-methylnaphthalene as an internal standard, 20 bar of H2 gas, solvent. bDetermined by 1H NMR relative to 1-methylnaphthalene.
Hydrogenation of enamine 1h in (R)-limonene as a solvent.
| Entrya | Ligand | Time, h | Amine, %b | ||
| 1 | 16 | 40 | 0 | 48 | |
| 2 | 16 | 40 | 74 | 20 | |
| 3 | 20 | 45 | 11 | 65 | |
| 4 | 20 | 45 | 92 | 23 | |
aGeneral conditions: 1.5 mmol of 1h, 0.2 mol % of [Rh(COD)Cl]2, 0.8 mol % ligand, 0.15 mL of 1-methylnaphthalene as an internal standard, 60 bar of H2 gas, (R)-limonene. Ratio of solvent/enamine = 6.68:1. bDetermined by 1H NMR relative to 1-methylnaphthalene.