Ma Yuhui, Wang Mang, Li Dan, Bekturhun Bahargul, Liu Jun, Liu Qun
Department of Chemistry, Northeast Normal University, Changchun 130024, PR China.
J Org Chem. 2009 Apr 17;74(8):3116-21. doi: 10.1021/jo900217g.
A versatile multicomponent reaction based on the new four-carbon synthons alpha-alkenoyl ketene S,S-acetals 1 has been developed. This three-component reaction of readily available alpha-alkenoyl ketene S,S-acetals 1 with aldehydes 2 and active methylene compounds 3 proceeds smoothly in acidic medium (glacial acetic acid in tetrahydrofuran) to give various polyfunctionalized cyclohexanones 4, 5, and 6 in a highly regio- and diastereoselective manner with good to excellent yields. The reaction can tolerate a broad range of substituents in the three components involved and is proposed to proceed via a tandem Knoevenagel-intermolecular Michael-intramolecular Michael sequence. As an extension of the synthetic application of polyfunctionalized cyclohexanones obtained, unsymmetrical biaryls 7 were synthesized in almost quantitative yields by simple transformations of the corresponding cycloadducts 6.
基于新型四碳合成子α-烯酰基乙烯酮S,S-乙缩醛1,开发了一种通用的多组分反应。易得的α-烯酰基乙烯酮S,S-乙缩醛1与醛2和活性亚甲基化合物3的三组分反应在酸性介质(四氢呋喃中的冰醋酸)中顺利进行,以高区域和非对映选择性的方式得到各种多官能化环己酮4、5和6,产率良好至优异。该反应能够耐受所涉及的三种组分中的多种取代基,并且推测其通过串联的Knoevenagel-分子间迈克尔-分子内迈克尔序列进行。作为所得多官能化环己酮合成应用的扩展,通过相应环加成物6的简单转化,以几乎定量的产率合成了不对称联芳基7。