Department of Chemistry , University of Rochester , 414 Hutchison Hall, 100 Trustee Road , Rochester , New York 14627-0216 , United States.
J Am Chem Soc. 2019 Jan 9;141(1):118-122. doi: 10.1021/jacs.8b11713. Epub 2018 Dec 20.
An expedient strategy for the synthesis of polycyclic small molecules is described. The method first joins together two achiral building blocks (an enyne and an aldehyde or a ketone) using an alkynyl halo-Prins protocol. Then, in the same reaction vessel, acidic conditions initiate a cationic cascade that includes a stereospecific halo-Nazarov electrocyclization and a diastereoselective Friedel-Crafts allylation. The entire sequence forms three carbon-carbon bonds and a carbon-halogen bond, generating halocyclopentene adducts in one pot from simple precursors. The process occurs with excellent diastereocontrol, providing highly functionalized polycycles containing three tertiary or quaternary stereogenic centers in a linear array. It is even possible to install three contiguous all-carbon quaternary centers using this method.
描述了一种多环小分子的合成策略。该方法首先使用炔基卤代-Prins 协议将两个非手性构建块(烯炔和醛或酮)连接在一起。然后,在同一个反应容器中,酸性条件引发阳离子级联反应,包括立体特异性卤代-纳扎罗夫电环化和非对映选择性傅克烷基化。整个序列形成三个碳-碳键和一个碳-卤键,从简单的前体一锅法生成卤代环戊烯加合物。该过程具有极好的非对映选择性控制,提供了高度官能化的多环化合物,其中三个三级或四级手性中心呈线性排列。甚至可以使用这种方法安装三个连续的全碳季碳中心。