Institut für Organische Chemie, Universität Leipzig , Johannisallee 29, D-04103 Leipzig, Germany.
J Org Chem. 2017 Aug 4;82(15):7796-7805. doi: 10.1021/acs.joc.7b00830. Epub 2017 Jul 17.
An NHC-catalyzed nitro-Stetter/elimination/Stetter reaction sequence employs nitroalkenes as latent 1,2-dication synthons providing a novel access to highly useful symmetrical and unsymmetrical 2-aryl substituted 1,4-diketone building blocks from commercially available aldehyde precursors. For less activated (aliphatic) aldehydes, a cooperative catalytic strategy has been developed via the merger of NHC and H-bonding catalysis. To further showcase the versatility of our approach, a great variety of these unprecedented 1,4-diketones are used to efficiently synthesize polysubstituted pyrroles-including those with hetaryl substituents-in good to excellent yields in a multicatalytic metal-free, four-step one-pot cascade reaction under mild, yet robust, conditions.
NHC 催化的硝基-Stetter/消除/Stetter 反应序列采用硝基烯烃作为潜在的 1,2-二阳离子合成子,为从商业可得的醛前体提供了一种新颖的方法来获得高有用的对称和不对称的 2-芳基取代的 1,4-二酮基构建块。对于不太活泼的(脂族)醛,通过合并 NHC 和氢键催化,已经开发出一种协同催化策略。为了进一步展示我们方法的多功能性,使用大量这些前所未有的 1,4-二酮以高效率合成多取代吡咯-包括那些具有杂芳基取代基的吡咯-在温和但坚固的条件下,在多相无金属、四步一锅级联反应中以良好至优异的收率得到。