| Literature DB >> 25950770 |
Nicoletta Brindani1,2, Gloria Rassu3, Luca Dell'Amico1,4, Vincenzo Zambrano5, Luigi Pinna6, Claudio Curti1, Andrea Sartori1, Lucia Battistini1, Giovanni Casiraghi1, Giorgio Pelosi7, Daniela Greco1, Franca Zanardi8.
Abstract
A direct aminocatalytic synthesis has been developed for the chemo-, regio-, diastereo-, and enantioselective construction of densely substituted polycyclic carbaldehydes containing fused cyclohexadiene rings. The chemistry utilizes, for the first time, remotely enolizable π-extended allylidenemalononitriles as electron-rich 1,3-diene precursors in a direct eliminative [4+2] cycloaddition with both aromatic and aliphatic α,β-unsaturated aldehydes. The generality of the process is demonstrated by approaching 6,6-, 5,6-, 7,6-, 6,6,6-, and 6,5,6-fused ring systems, as well as biorelevant steroid-like 6,6,6,6,5- and 6,6,6,5,6-rings. A stepwise reaction mechanism for the key [4+2] addition is proposed as a domino bis-vinylogous Michael/Michael/retro-Michael reaction cascade. The utility of the malononitrile moiety as traceless activating group of the dicyano nucleophilic substrates is demonstrated.Entities:
Keywords: asymmetric catalysis; carbocycles; cycloaddition; organocatalysis; synthetic methods
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Year: 2015 PMID: 25950770 DOI: 10.1002/anie.201501894
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336