Jiao Lei, Liang Yong, Xu Jiaxi
Key Laboratory of Biooganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, PR China.
J Am Chem Soc. 2006 May 10;128(18):6060-9. doi: 10.1021/ja056711k.
The relative (cis, trans) stereoselectivity of the beta-lactam formation is one of the critical issues in the Staudinger reaction. Although many attempts have been made to explain and to predict the stereochemical outcomes, the origin of the stereoselectivity remains obscure. We are proposing a model that explains the relative stereoselectivity based on a kinetic analysis of the cis/trans ratios of reaction products. The results were derived from detailed Hammett analyses. Cyclic imines were employed to investigate the electronic effect of the ketene substituents, and it was found that the stereoselectivity could not be simply attributed to the torquoelectronic model. Based on our results, the origin of the relative stereoselectivity can be described as follows: (1) the stereoselectivity is generated as a result of the competition between the direct ring closure and the isomerization of the imine moiety in the zwitterionic intermediate; (2) the ring closure step is most likely an intramolecular nucleophilic addition of the enolate to the imine moiety, which is obviously affected by the electronic effect of the ketene and imine substituents; (3) electron-donating ketene substituents and electron-withdrawing imine substituents accelerate the direct ring closure, leading to a preference for cis-beta-lactam formation, while electron-withdrawing ketene substituents and electron-donating imine substituents slow the direct ring closure, leading to a preference for trans-beta-lactam formation; and (4) the electronic effect of the substituents on the isomerization is a minor factor in influencing the stereoselectivity.
β-内酰胺形成的相对(顺式、反式)立体选择性是施陶丁格反应中的关键问题之一。尽管人们已多次尝试解释和预测立体化学结果,但立体选择性的起源仍不清楚。我们提出了一个基于对反应产物顺式/反式比例进行动力学分析来解释相对立体选择性的模型。结果来自详细的哈米特分析。使用环状亚胺研究烯酮取代基的电子效应,发现立体选择性不能简单地归因于扭转电子模型。基于我们的结果,相对立体选择性的起源可描述如下:(1)立体选择性是两性离子中间体中直接闭环与亚胺部分异构化之间竞争的结果;(2)闭环步骤很可能是烯醇负离子对亚胺部分的分子内亲核加成,这显然受烯酮和亚胺取代基电子效应的影响;(3)给电子的烯酮取代基和吸电子的亚胺取代基加速直接闭环,导致倾向于形成顺式β-内酰胺,而吸电子的烯酮取代基和给电子的亚胺取代基减缓直接闭环,导致倾向于形成反式β-内酰胺;(4)取代基对异构化的电子效应是影响立体选择性的次要因素。