Xie Hexin, Zu Liansuo, Li Hao, Wang Jian, Wang Wei
Department of Chemistry and Chemical Biology, University of New Mexico, Albuquerque, New Mexico 87131-0001, USA.
J Am Chem Soc. 2007 Sep 5;129(35):10886-94. doi: 10.1021/ja073262a. Epub 2007 Aug 11.
The development of efficient methods for the facile construction of important molecular architectures is a central goal in organic synthesis. An unprecedented organocatalytic asymmetric cascade Michael-alkylation reaction of alpha,beta-unsaturated aldehydes with bromomalonates has been developed. The process, efficiently catalyzed by chiral diphenylprolinol TMS ether in the presence of base 2,6-lutidine, serves as a powerful approach to the preparation of synthetically and biologically important cyclopropanes in high levels of enantio- and diastereoselectivities. Remarkably, the power of the cascade process is fueled by its high efficiency of the production of two new C-C bonds, two new stereogenic centers, and one quaternary carbon center in one single operation, which otherwise is difficult to achieve by traditional strategies. Moreover, the beauty of the cascade process is further underscored by the nature of the product formation depending on the reaction conditions. With the alternation of base from 2,6-lutidine (1.1 equiv), which is effective for the cyclopropanations, to NaOAc (4.0 equiv), the spontaneous ring-opening of cyclopropanes takes place to lead to stereoselective (E) alpha-substituted malonate alpha,beta-unsaturated aldehydes. A possible reaction mechanism, which involves a Michael-alkylation-retro-Michael pathway, is proposed and verified by experimental studies. This investigation represents the first example of an organocatalyst-promoted ring opening of the cyclopropanes, whereas such reactions have been intensively explored by Lewis acid-based catalysis.
开发高效构建重要分子结构的简便方法是有机合成的核心目标。已开发出一种前所未有的α,β-不饱和醛与溴代丙二酸酯的有机催化不对称串联迈克尔-烷基化反应。该过程在手性二苯基脯氨醇TMS醚和碱2,6-二甲基吡啶存在下高效催化,是一种以高对映选择性和非对映选择性制备合成和生物学上重要的环丙烷的有效方法。值得注意的是,串联过程的强大之处在于其在一次操作中高效生成两个新的C-C键、两个新的立体中心和一个季碳中心,而这是传统策略难以实现的。此外,产物形成的性质取决于反应条件,这进一步凸显了串联过程的优势。随着碱从对环丙烷化有效的2,6-二甲基吡啶(1.1当量)变为醋酸钠(4.0当量),环丙烷会自发开环,生成立体选择性的(E)α-取代丙二酸酯α,β-不饱和醛。提出了一种可能的反应机理,该机理涉及迈克尔-烷基化-逆迈克尔途径,并通过实验研究得到验证。本研究代表了有机催化剂促进环丙烷开环的首个实例,而此类反应此前已通过基于路易斯酸的催化进行了深入探索。