| Literature DB >> 18941500 |
Deniz Akalay1, Gerd Dürner, Jan W Bats, Michael W Göbel.
Abstract
C(2)-symmetric bisamidines 8 have been tested as chiral Brønsted bases in the Diels-Alder reaction of anthrones and N-substituted maleimides. High yields of cycloadducts and significant asymmetric inductions up to 76% ee are accessible. The proposed mechanism involves proton transfer between anthrone and bisamidine, association of the resulting ions and finally a cycloaddition step stereoselectively controlled by the chiral ion pair.Entities:
Keywords: Asymmetric Catalysis; Bisamidines; Brønsted base; Diels-Alder reaction; Organocatalysis
Year: 2008 PMID: 18941500 PMCID: PMC2533436 DOI: 10.3762/bjoc.4.28
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Diels-Alder reaction of anthrones 1 and maleimides 2 catalyzed by chiral Brønsted bases 4–8.
Scheme 2Protonation states and tautomerism of C2-symmetric bisamidine 8a [6].
Scheme 3Synthesis of C2-symmetric bisamidines 8b–c and ent-8d.
Figure 1Kinetic measurements of 1a with 2a catalyzed by 5 mol% of 8a·H+·TFPB- (black line) and 1 mol% 8a (free base; red line).
First evaluation step of chiral bisamidine catalysts.
| entrya | catalyst | yield [%]b | |
| 1 | 86 | 11 | |
| 2 | 78 | 17 | |
| 3 | 85 | 24 | |
| 4 | 71 | −17d | |
aAll reactions were carried out using 0.1 mmol maleimide 2a, 1.1 equiv anthrone (1a) and 0.25 equiv of catalyst in 1 mL abs. dichloromethane at room temperature for 30 minutes. bIsolated yield after column chromatography. cThe enantiomeric excess was determined by HPLC using a Chiralpak IA column. dA negative ee stands for an excess of ent-3a.
Influence of the solvent on the bisamidine catalyzed Diels-Alder reaction.
| entrya | solvent | yield [%]b | |
| 1 | dichloromethane | 84 | 30 |
| 2 | chloroform | 86 | 18 |
| 3 | benzene | 98 | 21 |
| 4 | toluene | 99 | 16 |
| 5 | α,α,α-trifluorotoluene | 99 | 13 |
| 6 | dibutyl ether | 89 | 11 |
aAll reactions were carried out using 0.1 mmol maleimide 2a, 1.1 equiv anthrone (1a) and 0.1 equiv of 8c in 1 mL abs. solvent at room temperature for 60 minutes. bIsolated yield after column chromatography. cThe enantiomeric excess was determined by HPLC using a Chiralpak IA column.
Influence of temperature on the Diels-Alder reaction.
| entrya | reaction temperature [°C] | reaction time [h] | yield [%]b | |
| 1 | 23 | 1 | 84 | 30 |
| 2 | 0 | 24 | 96 | 29 |
| 3 | −20 | 24 | 98 | 31 |
| 4 | −40 | 48 | 96 | 36 |
| 5 | −70 | 96 | 71 | 39 |
aAll reactions were carried out using 0.1 mmol maleimide 2a, 1.1 equiv anthrone (1a) and 0.1 (entry 1–4) or 0.25 equiv (entry 5) of 8c in 1 mL abs. dichloromethane. bIsolated yield after column chromatography. cEnantiomeric excess was determined by HPLC using Chiralpak IA column.
Scope of the Diels-Alder-reaction.
| entrya | R3 | conditionb | yield [%]c | |||
| 1 | Ph ( | A | 96 | 36 | ||
| 2 | A | 95 | 41 | |||
| 3 | iPr ( | B | 74 | 26 | ||
| 4 | B | 45 | 30 | |||
| 5 | Cy ( | B | 83 | 42 | ||
| 6 | B | 90 | 19 | |||
| 7 | Bn ( | A | 95 | 20 | ||
| 8 | CHPh2 ( | A | 85 | 26 | ||
| 9 | 4-Br-(C6H4)- ( | B | 70 | 13 | ||
| 10 | 4-MeO-(C6H4)- ( | A | 82 | 32 | ||
| 11 | 2,6-iPr2-(C6H3)- ( | B | 13 | |||
| 12 | C | 65 | 51 | |||
| 13 | C | 77 | 34 | |||
| 14 | C | 76 | 54 ( | |||
aAll reactions were carried out using 0.1 mmol maleimide, 1.1 equiv anthrone in 1 mL abs. CH2Cl2. bA = 10 mol% 8c, −40 °C, 48 h; B = 25 mol% 8a, −70 °C, 96 h; C = 25 mol% 8a, r.t., 3 h. cIsolated yield after column chromatography. dThe enantiomeric excess was determined by HPLC using a Chiralpak IA column. eRecrystallized from 2-propanol/n-hexane.
Figure 2Molecular structure of 3m (C: black; N: blue; O: red; Cl: green; hydrogen atoms are omitted for the sake of clarity).
Scheme 4Proposed mechanism of the Diels-Alder reaction.