| Literature DB >> 31354876 |
Gabrielle R Hammersley1, Meghan F Nichol1, Helena C Steffens1, Jose M Delgado1, Gesine K Veits1, Javier Read de Alaniz1.
Abstract
An enantioselective aza-Piancatelli rearrangement has been developed using a chiral Brønsted acid based on pentacarboxycyclopentadiene (PCCP). This reaction provides rapid access to valuable chiral 4-amino-2-cyclopentenone building blocks from readily available starting material and is operationally simple.Entities:
Keywords: Brønsted acid; PCCP; aza-Piancatelli; cyclopentane; furylcarbinols
Year: 2019 PMID: 31354876 PMCID: PMC6633596 DOI: 10.3762/bjoc.15.160
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Proposed mechanism of the asymmetric aza-Piancatelli reaction.
Initial optimization studies.
| Entry | Solvent | Temp (°C) | ee (%) | Yield (%) |
| 1 | DCM | 40 | 65 | 78 |
| 2 | DCM | 30 | 73 | 46 |
| 3 | DCM | rt | 78 | 26 |
| 4a | DCM | rt | 75 | 70 |
| 5 | DCE | rt | 68 | 23 |
| 6 | fluorobenzene | rt | 76 | 20 |
| 7 | toluene | rt | 75 | 12 |
aThis reaction was run for 5 days whereas the rest of the reactions were run for 2 days. Dichloromethane (DCM), 1,2-dichloroethane (DCE), room temperature (rt).
Scheme 1Asymmetric aza-Piancatelli rearrangement with a range of substituted anilines. *To simplify the purification process, carboxylic acids were transformed in situ into the corresponding methyl ester using (trimethylsilyl)diazomethane.
Scheme 2Asymmetric aza-Piancatelli rearrangement with a range of substituted furylcarbinols. *To simplify the purification process, carboxylic acids were transformed in situ into the corresponding methyl ester using (trimethylsilyl)diazomethane.