| Literature DB >> 26752795 |
Xiaoxiao Song1, Qijian Ni1, Chen Zhu1, Gerhard Raabe1, Dieter Enders1.
Abstract
Diastereo- and enantioselective N-heterocyclic carbene catalyzed 1-azadiene Diels-Alder reactions of (E)-2-styrylbenzothiazoles with α-chloro aldehydes are reported. This annulation strategy provides an efficient access to medicinally important dihydrobenzothiazolopyridin-1-ones in good to excellent yields (44-97%) with very good to excellent stereoselectivities (up to 9:1 dr, 98% ee) and tolerates quite a range of substituents.Entities:
Keywords: N-heterocyclic carbenes; annulation; asymmetric synthesis; aza-Diels–Alder reaction; organocatalysis
Year: 2014 PMID: 26752795 PMCID: PMC4702348 DOI: 10.1055/s-0034-1379369
Source DB: PubMed Journal: Synthesis (Stuttg) ISSN: 0039-7881 Impact factor: 3.157
Scheme 1NHC-catalyzed aza-Diels–Alder reactions
Optimization of the Reaction Conditions[a]
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| Entry | Precatalyst | Base | Solvent | Yield[ | dr[ | ee[ |
| 1 |
| Et3N | toluene | 29 | 6:1 | 95 |
| 2 |
| Et3N | toluene | trace | – | – |
| 3 |
| Et3N | toluene | trace | – | – |
| 4 |
| Et3N | toluene | n.r. | – | – |
| 5[ |
| Et3N | toluene | 29 | 6:1 | 93 |
| 6 |
| TMEDA | toluene | 40 | 5:1 | 95 |
| 7 |
| DIPEA | toluene | 37 | 7:1 | 94 |
| 8 |
| DABCO | toluene | 30 | 3:1 | 94 |
| 9 |
| NaOAc | toluene | trace | – | – |
| 10 |
| K2CO3 | toluene | n.r. | – | – |
| 11 |
| TMEDA | THF | 41 | 3:1 | 94 |
| 12 |
| TMEDA | mesitylene | 29 | 3.5:1 | 94 |
| 13 |
| TMEDA | CH2Cl2 | 46 | 3:1 | 97 |
| 14 |
| TMEDA | MeCN | 96 | 1:2.5 | 96 |
| 15 |
| DABCO | MeCN | 58 | 1:13 | 87 |
| 16 |
| DIPEA | MeCN | 99 | 3.5:1 | 97 |
| 17 |
| DIPEA | toluene–MeCN, 4:1 | 76 | 7.5:1 | 97 |
| 18 |
| DIPEA | toluene–MeCN, 1:4 | 97 | 5:1 | 97 |
| 19 |
| DIPEA | toluene–MeCN, 2:1 | 94 | 7:1 | 97 |
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Reaction conditions: 1a (0.2 mmol), 2a (0.3 mmol), precatalyst (0.02 mmol), base (0.4 mmol), solvent (v/v, 2 mL in total), r.t., under argon, 16 h.
Yield of isolated product 3a after column chromatography; n.r. = no reaction.
Determined by 1H NMR spectroscopy.
Determined by HPLC on a chiral stationary phase.
Performed at 40 °C.
Asymmetric Synthesis of Dihydrobenzothiazolopyridin-1-ones 3[a]
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| 3 | R2 | R3 | Yield[ | dr[ | ee[ |
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| Ph | Bn | 93 | 7:1 | 96 |
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| 4-Tol | Bn | 74 | 9:1 | 96 |
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| 4-MeOC6H4 | Bn | 72 | 8:1 | 94 |
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| 3-MeOC6H4 | Bn | 94 | 6:1 | 98 |
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| 4-ClC6H4 | Bn | 84 | 6:1 | 97 |
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| 3-ClC6H4 | Bn | 97 | 4:1 | 98 |
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| 4-FC6H4 | Bn | 97 | 4:1 | 97 |
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| 2-furyl | Bn | 68 | 6:1 | 92 |
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| Ph | Bn | 97 | 9:1 | 98 |
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| Ph | Bn | 97 | 4:1 | 95 |
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| Ph | 71 | 8:1 | 98 | |
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| Ph | 44 | 5:1 | 96 | |
Reaction conditions: 1 (0.5 mmol), 2 (0.75 mmol), precatalyst A (0.05 mmol), DIPEA (1.0 mmol), toluene-MeCN (1:2, v/v; 5 mL in total), r.t., under argon, 16 h; R1 = H, X = S, unless otherwise noted.
Yield of isolated product 3 as a mixture of diastereomers after column chromatography.
Determined by 1H NMR spectroscopy.
Determined by HPLC on a chiral stationary phase.
Reaction time was 43 h.
Reaction time was 40 h.
R1 = Cl; reaction time was 18 h.
X = O.
Figure 1The relative (NOE) and absolute configuration [X-ray, χabs = 0.049(18)] of 3d
Scheme 2Proposed reaction mechanism