| Literature DB >> 23152942 |
Luca Deiana1, Samson Afewerki, Carlos Palo-Nieto, Oscar Verho, Eric V Johnston, Armando Córdova.
Abstract
The concept of combining heterogeneous transition metal and amine catalysis for enantioselective cascade reactions has not yet been realized. This is of great advantage since it would allow for the recycling of expensive and non-environmentally friendly transition metals. We disclose that the use of a heterogeneous Pd-catalyst in combination with a simple chiral amine co-catalyst allows for highly enantioselective cascade transformations. The preparative power of this process has been demonstrated in the context of asymmetric cascade Michael/carbocyclization transformations that delivers cyclopentenes bearing an all carbon quaternary stereocenters in high yields with up to 30:1 dr and 99% ee. Moreover, a variety of highly enantioselective cascade hetero-Michael/carbocyclizations were developed for the one-pot synthesis of valuable dihydrofurans and pyrrolidines (up to 98% ee) by using bench-stable heterogeneous Pd and chiral amines as co-catalysts.Entities:
Year: 2012 PMID: 23152942 PMCID: PMC3496984 DOI: 10.1038/srep00851
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Pd-Amine co-catalyzed DYKAT.
Condition screening*
| Entry | Time (h) | Solvent | Metal Cat. | Yield (%) | dr | ee (%) |
|---|---|---|---|---|---|---|
| 1 | 22 | CH3CN | Pd(II)-AmP-MCF (1.5 mol%) | 37 | 16:1 | 90 |
| 2 | 24 | CH3CN | Pd(II)-AmP-MCF (3.0 mol%) | 68 | 21:1 | 86 |
| 3 | 21 | CH2Cl2 | Pd(II)-AmP-MCF (3.0 mol%) | 80 | 16:1 | 94 |
| 4 | 3.5 | CH2Cl2 | Pd(II)-AmP-MCF (3.0 mol%) | 73 | 10:1 | 96 |
| 5 | 23 | toluene | Pd(II)-AmP-MCF (3.0 mol%) | 76 | 9:1 | 94 |
| 6 | 18 | toluene | Pd(II)-AmP-MCF (3.0 mol%) | 67 | 10:1 | 94 |
| 7 | 4 | CH2Cl2 | PdCl2 (3 mol%) | 81 | 18:1 | 94 |
| 8 | 23 | toluene | PdCl2 (3 mol%) | 76 | 9:1 | 94 |
| 9 | 42 | CH3CN | Pd(0)-AmP-MCF (3.0 mol%) | 67 | 17:1 | 86 |
| 10 | 18 | CH2Cl2 | Pd(0)-AmP-MCF (3.0 mol%) | 70 | 16:1 | 91 |
| 11 | 18 | toluene | Pd(0)-AmP-MCF (3.0 mol%) | 75 | 15:1 | 95 |
| 12 | 18 | Pd(0)-AmP-MCF (3.0 mol%) | 72 | 15:1 | 92 | |
| 13 | 18 | toluene | Pd(PPh3)4 (3 mol%) | 71 | 10:1 | 91 |
| 14 | 41 | CH3CN | Pd(PPh3)4 (3 mol%) | 76 | 12:1 | 86 |
| 15 | 23 | CH2Cl2 | Pd(II)-AmP-MCF | 0 | - | - |
| 16 | 23 | CH2Cl2 | - | 0 | - | - |
*Experimental conditions unless otherwise noted: A mixture of 2 (0.24 mmol), Pd (3 mol%) in solvent (0.5 mL) was stirred for 5 min. To this, aldehydes 1 (0.2 mmol) and amine 4 (20 mol%) were added and the reaction was stirred at room temperature for the time given in the table.
§Isolated yield of 3a.
¶Determined by1H NMR.
†Determined by chiral-phase HPLC analysis.
‡No chiral amine 4 was added.
[euro]Only chiral amine catalyst was 4. The conjugate addition intermediate was formed with a 2:1 dr.
The scope of the co-catalytic asymmetric cascade reaction using a heterogeneous Pd and chiral amine catalyst*
| Entry[a] | R (Prod.) | Time (h) | Yield (%) | dr | ee(%) |
|---|---|---|---|---|---|
| 1 | 18 | 75 | 15:1 | 95 | |
| 2 | 20 | 80 | 16:1 | 94 | |
| 3 | 5 | 74 | 21:1 | 91 | |
| 4 | 16 | 83 | 18:1 | 96 | |
| 5 | 18 | 78 | 19:1 | 99 | |
| 6 | 16 | 85 | 19:1 | 96 | |
| 7 | 18 | 70 | 15:1 | 91 | |
| 8 | 16 | 84 | 12:1 | 96 | |
| 9 | 16 | 86 | 24:1 | 96 | |
| 10 | 18 | 81 | 12:1 | 91 | |
| 11 | 23 | 67 | 5:1 | 96 |
*Experimental conditions unless otherwise noted: A mixture of 2 (0.24 mmol), Pd(II)-AmP-MCF (3 mol%) in solvent (0.5 mL) was stirred for 5 min. To this, aldehydes 1 (0.2 mmol) and amine 4 (20 mol%) were added and the reaction was stirred at room temperature for the time given in the table.
§Isolated yield of 3.
¶Determined by1H NMR.
†Determined by chiral-phase HPLC analysis.
‡Reaction performed with Pd(0)-AmP-MCF in toluene.
£Reaction performed with Pd(II)-AmP-MCF in CH2Cl2.
The scope of the co-catalytic asymmetric cascade reaction using a heterogeneous Pd and chiral amine catalyst
| Entry | R | Alkyne | t [h] | Prod. | Yield [%] | ee [%] |
|---|---|---|---|---|---|---|
| 1 | 17 | 82 | 92 | |||
| 2 | 17 | 69 | 89 | |||
| 3 | 40 | 85 | 93 | |||
| 4 | 22 | 59 | 94 | |||
| 5 | 25 | 59 | 98 | |||
| 6 | 22 | 53 | 92 | |||
| 7 | 20 | 59 | 94 | |||
| 8 | 22 | 53 | 96 | |||
| 9 | 20 | 67 | 94 | |||
| 10 | Me | 23 | 84 | 77 |
*A mixture of propargyl alcohol 5 (0.375 mmol), Pd(II)-AmP-MCF (3 mol%) in CHCl3 (0.5 mL) was stirred for 5 min. Aldehydes 1 (0.25 mmol), amine 4 (20 mol%) and benzoic acid (20 mol%) were then added and the reaction was stirred at 4°C for appropriate time.
£Pd(0)-AmP-MCF (5 mol%) in toluene (0.5 mL) at room temperature. Otherwise identical to*.
†THF (0.25 mL) and 5 (0.75 mmol) otherwise identical to *.
§A mixture of propargyl amine 6 (0.30 mmol), Pd(II)-AmP-MCF (5 mol%) in toluene (1.0 mL) was stirred for 5 min. Aldehydes 1 (0.20 mmol), amine 4 (20 mol%), sodium acetate (2.5 equiv) and water (1 equiv) were added and the reaction was stirred at room temperature for the time given in the table.
¶Isolated yield.
‡Determined by chiral-phase HPLC analysis.
Recycling of the heterogeneous Pd-catalyst*
| Cycle | Time (h) | Yield (%) | dr (%) | ee (%) |
|---|---|---|---|---|
| 1 | 20 | 73 | 13:1 | 92 |
| 2 | 17 | 73 | 19:1 | 93 |
| 3 | 17 | 78 | 23:1 | 92 |
| 4 | 16 | 82 | 21:1 | 93 |
| 5 | 19 | 82 | 23:1 | 93 |
| 6 | 17 | 78 | 30:1 | 94 |
| 7 | 16 | 92 | 18:1 | 94 |
| 8 | 16 | 81 | 16:1 | 94 |
| 9 | 16 | 89 | 17:1 | 94 |
*Experimental conditions unless otherwise noted: A mixture of 2 (0.72 mmol), Pd(II)-AmP-MCF (3 mol%) in CH2Cl2 (1.5 mL) was stirred for 5 min. To this aldehyde 1a (0.6 mmol) and amine 3 (20 mol%) were added and the reaction was stirred at room temperature for the time given in the table. Isolated yield.
¶Determined by 1H NMR.
†Determined by chiral-phase HPLC analysis.