| Literature DB >> 23019480 |
Sergei Zari1, Tiiu Kailas, Marina Kudrjashova, Mario Oeren, Ivar Järving, Toomas Tamm, Margus Lopp, Tõnis Kanger.
Abstract
The organocatalytic Michael addition of malonates to symmetric unsaturated 1,4-diketones catalyzed by thiourea and squaramide derivatives with Cinchona alkaloids afforded the formation of a new C-C bond in high yields (up to 98%) and enantiomeric purities (up to 93%). The absolute configuration of the product was suggested from comparison of the experimental and calculated VCD spectra of the reaction product 3a.Entities:
Keywords: Michael addition; non-covalent catalysis; organocatalysis; squaramide; thiourea
Year: 2012 PMID: 23019480 PMCID: PMC3458770 DOI: 10.3762/bjoc.8.165
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1The conjugated addition to unsaturated 1,4-diketone 1.
Figure 2Organocatalysts screened.
Screening of the catalysts for the asymmetric conjugated-addition reaction.
| entry | catalyst | time (h) | yielda (%) | eeb (%) | abs. conf.c |
| 1 | 120 | 97 | 13 | R | |
| 2 | 28 | 98 | 27 | R | |
| 3 | 168 | 88 | 10 | R | |
| 4 | 24 | >98 | 19 | S | |
| 5 | 20 | >98 | 18 | R | |
| 6 | 24 | >98 | 74 | S | |
| 7 | 19 | 98 | 74 | R | |
| 8 | 15 | 96 | 60 | R | |
| 9 | 96 | 96 | 39 | R | |
aIsolated yield; bdetermined by chiral HPLC; cdetermined by a comparison of the experimental and calculated VCD spectra (see the following).
Enantioselective addition of malonates 2a-2f to unsaturated 1,4-diketone 1a.
| entry | R | catalyst | time (h) | yieldc (%) | eed (%) |
| 1 | 19 | 99 | 74 | ||
| 2 | 96 | 96 | 39 | ||
| 3 | 15 | 92 | 73 | ||
| 4 | 30 | 95 | 87 | ||
| 5 | 36 | 96 | 69 | ||
| 6 | 96 | 96 | 60 | ||
| 7a | 75 | 70 | 59 | ||
| 8a | 33 | 95 | 70 | ||
| 9b | 3 | 44 | 37 | ||
| 10b | 2 | 41 | 81 | ||
| 11 | 6 | 95 | 68 | ||
| 12 | 6 | 92 | 84 | ||
aReaction at 80 °C, malonate/dione 2:1; bmalonate/dione 1:1; cyields of isolated products; ddetermined by chiral HPLC.
Enantioselective addition of diethylmalonate 2a to substituted 1,4-diketones 1a, g–j.
| entry | R | catalyst | temp. (°C) | time (h) | yieldb (%) | eec (%) |
| 1 | rt | 19 | 99 | 74 | ||
| 2 | rt | 96 | 97 | 39 | ||
| 3 | 80 | 10 | 97 | 82 | ||
| 4 | rt | 18 | 96 | 69 | ||
| 5 | rt | 213 | 25 | 18 | ||
| 6 | 80 | 22 | 76 | 66 | ||
| 7 | rt | 88 | 90 | 79 | ||
| 8 | rt | 48 | — | — | ||
| 9 | 80 | 22 | 90 | 83 | ||
| 10a | rt | 48 | 83 | 81 | ||
| 11a | rt | 123 | 20 | 93 | ||
| 12a | 80 | 6 | 86 | 91 | ||
| 13 | rt | 54 | 66 | 81 | ||
| 14 | rt | 94 | 44 | 89 | ||
| 15 | 80 | 6 | 98 | 89 | ||
aDione/malonate 1.2:1; byields of isolated products; cdetermined by chiral HPLC.
Figure 3Proposed transition state.
Figure 4Calculated (red) and experimental (blue) IR (A) and VCD spectrum (B) of compound (R)-3a.