Souillart Laetitia, Cramer Nicolai
Laboratory of Asymmetric Catalysis and Synthesis, EPFL SB ISIC LCSA, BCH 4305, 1015 Lausanne (Switzerland), Fax: (+41) 21 693 97 00 http://isic.epfl.ch/lcsa.
Chemistry. 2015 Jan 26;21(5):1863-7. doi: 10.1002/chem.201406135. Epub 2014 Dec 4.
The exploitation of strain release in small rings as driving force to enable complex transformations is a powerful synthetic tool. Among them, cyclobutanones are particularly versatile substrates that can be elaborated in a wide variety of structurally diverse building blocks. Herein, Lewis acid catalyzed rearrangement reactions are presented that provide selective access to two structurally distinct polycyclic scaffolds, that is, indenylacetic acid derivatives and benzoxabicyclo[3.2.1]octan-3-ones. The choice of the Lewis acid fully controls the reaction pathway and the regioselectivity of the cyclobutanone CC bond cleavage site.
利用小环中的应变释放作为驱动力来实现复杂转化是一种强大的合成工具。其中,环丁酮是特别通用的底物,可以转化为各种各样结构多样的结构单元。本文介绍了路易斯酸催化的重排反应,该反应可选择性地生成两种结构不同的多环骨架,即茚基乙酸衍生物和苯并氧杂双环[3.2.1]辛-3-酮。路易斯酸的选择完全控制了反应途径和环丁酮CC键裂解位点的区域选择性。