College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou 450001, China.
Chem Soc Rev. 2018 Oct 15;47(20):7552-7576. doi: 10.1039/c8cs00036k.
Ru-Catalyzed aromatic C-H bond activation and functionalization have emerged as important topics because they have resulted in remarkable progress in organic synthesis. Both experimental and theoretical studies of their mechanisms are important for the design of new synthetic methodologies. In this review, a mechanistic view of the Ru-mediated C-H bond cleavage step is first given to reveal the C-H bond activation modes, including oxidative addition, metathesis and base-assisted deprotonation. In this process, directing groups play an important role in determining the reactivity of the C-H bond. The C-H bond activation generally leads to the formation of a Ru-C bond, which is further functionalized in the subsequent steps. The mechanisms of Ru-catalyzed arylation, alkylation, and alkenylation of arenes are summarized, and these transformations can be categorized into cross-coupling with electrophiles or oxidative coupling with nucleophiles. In addition, the mechanism of ortho-ruthenation-enabled remote C-H bond functionalization is also discussed.
钌催化的芳香 C-H 键活化和功能化已成为重要的研究课题,因为它们在有机合成中取得了显著的进展。对其反应机制的实验和理论研究对于新合成方法的设计都很重要。在这篇综述中,首先给出了 Ru 介导的 C-H 键断裂步骤的机理观点,以揭示 C-H 键的活化模式,包括氧化加成、复分解和碱辅助去质子化。在这个过程中,导向基团在确定 C-H 键的反应性方面起着重要作用。C-H 键的活化通常导致 Ru-C 键的形成,然后在后续步骤中对其进行功能化。总结了 Ru 催化的芳基化、烷基化和烯基化反应的机理,这些转化可以分为与亲电试剂的交叉偶联或与亲核试剂的氧化偶联。此外,还讨论了邻位钌化促进的远程 C-H 键功能化的机理。