Wender Paul A, Gamber Gabriel G, Hubbard Robert D, Pham Son M, Zhang Lei
Stanford University, Department of Chemistry, Stanford, California 94305-5080, USA.
J Am Chem Soc. 2005 Mar 9;127(9):2836-7. doi: 10.1021/ja042728b.
Prompted by the view that intermediates of transition metal-catalyzed reactions could be intercepted by one or more additional components, studies in our laboratory have led to the design and development of new three-component [5+2+1], [4+2+1], and [2+2+1] cycloadditions. These continuing studies have now led to the identification of a fundamentally new four-component [5+1+2+1] cycloaddition reaction of vinylcyclopropanes, alkynes and CO, yielding hydroxyindanone products in generally good yields. Terminal alkynes bearing aryl or alkyl groups are tolerated well. Substitution at any position of the VCP leads predictably to substituted hydroxyindanone products. Using a bis-alkynyl substrate, the reaction can be carried out bi-directionally, forming 10 C-C bonds and four new rings from seven components in a single, operationally simple process.
基于过渡金属催化反应的中间体可被一种或多种额外组分截获的观点,我们实验室的研究已导致新型三组分[5+2+1]、[4+2+1]和[2+2+1]环加成反应的设计与开发。这些持续的研究现已导致鉴定出一种全新的乙烯基环丙烷、炔烃和CO的四组分[5+1+2+1]环加成反应,通常以良好的产率生成羟基茚满酮产物。带有芳基或烷基的末端炔烃耐受性良好。乙烯基环丙烷任何位置的取代可预测地导致取代的羟基茚满酮产物。使用双炔基底物,该反应可双向进行,在一个操作简单的单一过程中由七种组分形成10个C-C键和四个新环。