Golfmann Maxim, Walker Johannes C L
Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Tammannstr. 2, 37077, Göttingen, Germany.
Commun Chem. 2023 Jan 12;6(1):9. doi: 10.1038/s42004-022-00811-3.
Bicyclobutanes are among the most highly strained isolable organic compounds and their associated low activation barriers to reactivity make them intriguing building-blocks in organic chemistry. In recent years, numerous creative synthetic strategies exploiting their heightened reactivity have been presented and these discoveries have often gone hand-in-hand with the development of more practical routes for their synthesis. Their proclivity as strain-release reagents through their weak central C-C bond has been harnessed in a variety of addition, rearrangement and insertion reactions, providing rapid access to a rich tapestry of complex molecular scaffolds. This review will provide an overview of the different options available for bicyclobutane synthesis, the main classes of compounds that can be prepared from bicyclobutanes, and the associated modes of reactivity used.
双环丁烷是最具张力的可分离有机化合物之一,其相关的低反应活化能使其成为有机化学中引人关注的结构单元。近年来,人们提出了许多利用其高反应活性的创新性合成策略,这些发现往往与开发更实用的合成路线相辅相成。它们通过较弱的中心碳-碳键作为应变释放试剂的倾向已被应用于各种加成、重排和插入反应中,从而能够快速构建出丰富多样的复杂分子骨架。本综述将概述双环丁烷合成的不同方法、可由双环丁烷制备的主要化合物类别以及相关的反应模式。