Department of Chemistry, Stanford University, Stanford, California 94305-5080, USA.
J Am Chem Soc. 2010 Mar 3;132(8):2532-3. doi: 10.1021/ja910696x.
The bicyclo[5.3.0]decane skeleton is one of the most commonly encountered bicyclic subunits in nature and the core scaffold of a wide range of targets of structural, biological, and therapeutic importance. Prompted by the interest in such structures, we report the first studies of metal-catalyzed [5+2] cycloadditions of vinylcyclopropanes (VCPs) and enynones. The resultant efficiently formed dienone cycloadducts serve as substrates for subsequent Nazarov cyclizations and as intermediates for single-operation [5+2]/Nazarov serial reactions and catalytic cascades. In many cases the one-flask process can be carried out in shorter reaction times and with comparable or superior yields to the two-flask procedure. Significantly, a single catalyst can be used to mediate both transformations. These [5+2]/Nazarov reaction sequences and cascades collectively provide strategically novel and facile access to the bicyclo[5.3.0]decane skeleton from simple and readily available components.
bicyclo[5.3.0]癸烷骨架是自然界中最常见的双环亚基之一,也是广泛的结构、生物和治疗重要性目标的核心支架。受此类结构的兴趣的推动,我们报告了首例金属催化的乙烯基环丙烷(VCP)和烯酮的[5+2]环加成反应的研究。所得的高效形成的二烯酮环加成产物可作为随后的 Nazarov 环化反应的底物,以及单操作[5+2]/Nazarov 串联反应和催化级联的中间体。在许多情况下,一釜法可以在更短的反应时间内进行,并且产率与两釜法相当或更高。重要的是,单个催化剂可以用于介导这两种转化。这些[5+2]/Nazarov 反应序列和级联共同提供了从简单易得的起始原料到 bicyclo[5.3.0]decane 骨架的战略新颖且简便的方法。