Chun Yuge, Luu Khoi B, Woerpel K A
Department of Chemistry, New York University, 100 Washington Square East, New York, NY 10003 USA.
Synlett. 2024 Sep;35(15):1763-1787. doi: 10.1055/s-0042-1751541. Epub 2024 Jan 16.
Acetal substitution reactions can proceed by a number of mechanisms, but oxocarbenium ion intermediates are involved in many of these reactions. Our research has focused on understanding the conformational preferences, structures, and reactions of these intermediates. This Account summarizes our observations that electrostatic effects play a significant role in defining the preferred conformations, and that torsional effects determine how those intermediates react. Neighboring-group effects are not as straightforward as they might seem, considering that oxocarbenium ion intermediates are in equilibrium with structures that involve stabilization by a nearby substituent.
缩醛取代反应可以通过多种机制进行,但许多此类反应都涉及氧鎓离子中间体。我们的研究重点是了解这些中间体的构象偏好、结构和反应。本综述总结了我们的观察结果:静电效应在确定优选构象方面起着重要作用,而扭转效应决定了这些中间体的反应方式。考虑到氧鎓离子中间体与涉及附近取代基稳定作用的结构处于平衡状态,邻基效应并不像看起来那么简单。