Department of Chemistry, Graduate School of Science, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
Faculty of Arts and Science, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
J Org Chem. 2022 May 20;87(10):6769-6780. doi: 10.1021/acs.joc.2c00470. Epub 2022 May 3.
C-H functionalization has recently received considerable attention because C-H functionalization during the late-stage transformation is a strong and useful tool for the modification of the bioactive compounds and the creation of new active molecules. Although a carbene transfer reaction can directly convert a C-H bond to the desired C-C bond in a stereoselective manner, its application in late-stage material transformation is limited. Here, we observed that the iridium-salen complex exhibited efficient catalysis in asymmetric carbene C-H insertion reactions. Under optimized conditions, benzylic, allylic, and propargylic C-H bonds were converted to desired C-C bonds in an excellent stereoselective manner. Excellent regioselectivity was demonstrated in the reaction using not only simple substrate but also natural products, bearing multiple reaction sites. Moreover, based on the mechanistic studies, the iridium-catalyzed unique C-H insertion reaction involved rate-determining asynchronous concerted processes.
C-H 键功能化最近受到了相当多的关注,因为在晚期转化过程中进行 C-H 键功能化是修饰生物活性化合物和创造新活性分子的有力且有用的工具。尽管卡宾转移反应可以以立体选择性的方式直接将 C-H 键转化为所需的 C-C 键,但它在晚期材料转化中的应用受到限制。在这里,我们观察到铱-salen 配合物[Ir(salen)]表现出在不对称卡宾 C-H 插入反应中高效的催化作用。在优化条件下,苄基、烯丙基和炔丙基 C-H 键以优异的立体选择性转化为所需的 C-C 键。不仅在使用简单底物的反应中,而且在具有多个反应位点的天然产物的反应中都表现出优异的区域选择性。此外,根据机理研究,铱催化的独特 C-H 插入反应涉及速率决定的异步协同过程。