Laboratory of Molecular Recognition and Synthesis, Department of Chemistry, Zhejiang University , Hangzhou 310027, Zhejiang, People's Republic of China.
J Am Chem Soc. 2016 Mar 2;138(8):2532-5. doi: 10.1021/jacs.6b00051. Epub 2016 Feb 23.
Olefins, compounds with a carbon-carbon double bond, are of fundamental importance, and stereodefined construction of tetrasubstituted carbon-carbon double bond is a significant challenge. Here we show a unique and practical method for the preparation of stereodefined, fully substituted olefins via conjugate addition of organozinc reagents to readily available 2,3-allenals. Through mechanistic studies, it is confirmed that the geometry of the newly formed double bond is controlled by unique regiospecific oxygen-protonation of the enolate intermediates, generating 1,3-alkadienols. Such alkadienols would undergo a concerted 1,5-H-transfer reaction via a six-membered transition state to ensure the configuration of the carbon-carbon double bond in the final products. Using the readily available organozinc reagents and 2,3-allenals provides a very rapid access to a wide range of tetrasubstituted olefins with defined stereochemistry, bearing an extremely versatile aldehyde functionality.
烯烃是具有碳-碳双键的化合物,具有重要的基础意义,而立体定义的四取代碳-碳双键的构建是一个重大的挑战。在这里,我们展示了一种独特而实用的方法,通过有机锌试剂与易得的 2,3-烯丙醛的共轭加成,制备具有立体定义的、完全取代的烯烃。通过机理研究,证实新形成的双键的几何形状是由烯醇化物中间体的独特区域特异性氧质子化控制的,生成 1,3-烯丙醇。这样的烯丙醇会通过六元过渡态协同进行 1,5-H 转移反应,以确保最终产物中碳-碳双键的构型。使用易得的有机锌试剂和 2,3-烯丙醛可以非常快速地获得具有确定立体化学的广泛的四取代烯烃,具有极其多功能的醛基官能团。