Ren Jie, Xiong Yijia, Li Qian, Wang Bin, Wang Guanglu, Wang Bingyang, Liu Huimin, Yang Xuepeng
Henan International Joint Research Laboratory for Utilization of Plant Functional Components, School of Tobacco Science and Engineering, Zhengzhou University of Light Industry No. 136 Ke Xue Avenue Zhengzhou Henan 450002 People's Republic of China
RSC Adv. 2025 May 20;15(21):16921-16938. doi: 10.1039/d5ra02241j. eCollection 2025 May 15.
Amidine compounds, as important nitrogen analogues of isoelectronic carboxylic acids, are found throughout biologically active molecules and serve as the most attractive precursors for the synthesis of -containing compounds. In this review, the advancements in the synthesis of aza-heterocycles transition-metal catalyzed C-H bond activation of amidines have been summarized through diverse annulation reactions. Amidines act as two-electron donors the more basic and less sterically crowded imino lone pair and coordinate with transition-metals, in which N-H imine could act as both directing group and intramolecular nucleophile, electrophile or proton acceptor. The mechanisms of different annulation pathways will be highlighted in this review along with a discussion of more recent developments in the field.
脒化合物作为等电子羧酸的重要氮类似物,广泛存在于生物活性分子中,是合成含氮化合物最具吸引力的前体。在本综述中,通过各种环化反应总结了氮杂环合成方面的进展——过渡金属催化的脒的C-H键活化。脒作为双电子供体——碱性更强且空间位阻较小的亚氨基孤对电子,并与过渡金属配位,其中N-H亚胺既可以作为导向基团,又可以作为分子内亲核试剂、亲电试剂或质子受体。本综述将重点介绍不同环化途径的机制,并讨论该领域的最新进展。