The State Key Laboratory and Institute of Elemento-Organic Chemistry, College of Chemistry, Nankai University, Tianjin 300071, China.
J Am Chem Soc. 2021 May 12;143(18):6962-6968. doi: 10.1021/jacs.1c01194. Epub 2021 Apr 28.
The Nazarov electrocyclization reaction is a convenient, widely used method for construction of cyclopentenones. In the past few decades, catalytic asymmetric versions of the reaction have been extensively studied, but the strategies used to control the position of the double bond limit the substituent pattern of the products and thus the synthetic applications of the reaction. Herein, we report highly enantioselective silicon-directed Nazarov reactions which were cooperatively catalyzed by a Lewis acid and a chiral Brønsted acid. The chiral cyclopentenones we synthesized using this method generally cannot be obtained by means of other catalytic enantioselective reactions, including previously reported methods for enantioselective Nazarov cyclization. The silicon group in the dienone substrate stabilized the β-carbocation of the intermediate, thereby determining the position of the double bond in the product. Mechanistic studies suggested that the combination of Lewis and Brønsted acids synergistically activated the dienone substrate and that the enantioselectivity of the reaction originated from a chiral Brønsted acid promoted proton transfer reaction of the enol intermediate.
纳扎罗夫电环化反应是构建环戊烯酮的一种方便、用途广泛的方法。在过去的几十年中,该反应的催化不对称版本得到了广泛的研究,但用于控制双键位置的策略限制了产物的取代基模式,从而限制了反应的合成应用。在此,我们报告了高度对映选择性的硅导向纳扎罗夫反应,该反应由路易斯酸和手性布朗斯台德酸共同催化。我们使用这种方法合成的手性环戊烯酮通常不能通过其他催化对映选择性反应获得,包括以前报道的对映选择性纳扎罗夫环化反应方法。二烯酮底物中的硅基团稳定了中间体的β-碳正离子,从而确定了产物中双键的位置。机理研究表明,路易斯酸和布朗斯台德酸的结合协同激活了二烯酮底物,反应的对映选择性源于手性布朗斯台德酸促进的烯醇中间体的质子转移反应。