Department of Chemistry, Aarhus University, DK-8000 Aarhus C, Denmark.
Nat Chem. 2017 May;9(5):487-492. doi: 10.1038/nchem.2682. Epub 2016 Dec 19.
Cycloadditions that involve more than six π electrons are termed higher-order cycloadditions and are an excellent tool for solving complex synthetic challenges, as they provide direct access to polycyclic scaffolds that contain medium-sized rings. They have interesting synthetic potential for the discovery of new bioactive molecules and in natural product synthesis. It is peculiar that stereocontrolled [8+2] and [6+4] cycloadditions have been largely neglected for the past 50 years. Here we demonstrate a cross-dienamine activation of 2-cyclopentenone and the unprecedented endocyclic linear-dienamine activation of 2-cyclohexenones and 2-cycloheptenones. These dienamine intermediates undergo aminocatalytic stereoselective [8+2], [6+4] and formal [4+2] cycloadditions with various heptafulvenes. The periselectivities of the cycloadditions are controlled based on the ring size of the 2-cycloalkenones and the substitution patterns of the heptafulvenes. The chiral products obtained undergo various chemical and photochemical single-step transformations that give access to other classes of all-carbon polycyclic scaffolds.
涉及超过六个π电子的环加成反应被称为高阶环加成反应,是解决复杂合成挑战的绝佳工具,因为它们可以直接提供含有中等大小环的多环支架。它们在发现新的生物活性分子和天然产物合成方面具有有趣的合成潜力。奇怪的是,过去 50 年来,立体控制的[8+2]和[6+4]环加成反应在很大程度上被忽视了。在这里,我们证明了 2-环戊烯酮的交叉二烯胺活化,以及前所未有的内环线性二烯胺活化 2-环己烯酮和 2-环庚烯酮。这些二烯胺中间体与各种七氟茚进行氨基催化立体选择性的[8+2]、[6+4]和形式[4+2]环加成反应。环加成的对映选择性基于 2-环烯酮的环大小和七氟茚的取代模式进行控制。获得的手性产物经历各种化学和光化学的单步转化,可获得其他类别的全碳多环支架。