Sun Huan, Guimond Nicolas, Huang Yong
Key Laboratory of Chemical Genomics, School of Chemical Biology and Biotechnology, Peking University, Shenzhen Graduate School, Shenzhen, 518055, China.
Org Biomol Chem. 2016 Sep 28;14(36):8389-97. doi: 10.1039/c6ob01258b. Epub 2016 Aug 10.
Transition metal-catalyzed C-H bond insertion is one of the most straightforward strategies to introduce functionalities within a hydrocarbon microenvironment. For the past two decades, selective activation and functionalization of certain inert C-H bonds have been made possible with the help of directing groups (DGs). Despite the enormous advances in the field, an overwhelming majority of systems require two extra steps from their simple precursors: installation and removal of the DGs. Recently, traceless and multitasking groups were invented as a partial solution to DG release. However, installation remains largely unsolved. Ideally, a transient, catalytic DG would circumvent this problem and increase the step- and atom-economy of C-H functionalization processes. In this review, we summarize the recent development of the transient tethering strategy for C-H activation reactions.
过渡金属催化的C-H键插入是在碳氢化合物微环境中引入官能团的最直接策略之一。在过去的二十年里,借助导向基团(DGs),某些惰性C-H键的选择性活化和官能化成为可能。尽管该领域取得了巨大进展,但绝大多数体系从其简单前体开始需要额外的两个步骤:导向基团的安装和去除。最近,无痕且多功能的基团被发明出来作为导向基团释放问题的部分解决方案。然而,安装问题在很大程度上仍未解决。理想情况下,一个瞬态的、催化性的导向基团将规避这个问题,并提高C-H官能化过程的步骤经济性和原子经济性。在这篇综述中,我们总结了用于C-H活化反应的瞬态连接策略的最新进展。