Department of Chemistry, Texas A&M University , 3255 TAMU, College Station, Texas 77842, United States.
J Am Chem Soc. 2017 Dec 6;139(48):17297-17300. doi: 10.1021/jacs.7b10570. Epub 2017 Nov 17.
Transition-metal mediated C-H functionalization has emerged as a powerful method in the chemistry relevant to the synthesis of pharmaceuticals, agrochemicals, and advanced materials. Because organic molecules typically contain multiple types of C-H bonds, selective C-H functionalization is a major ongoing challenge. C-H activation of heteroatom-containing organics has often been approached via the use of the directing effect, whereby the coordination to the basic heteroatom directs the reactive metal center to a specific C-H bond. We now report a different approach where the nitrogen donor in pyridine derivatives coordinates to an ancillary Lewis acidic boryl ligand directly attached to the metal (iridium) center, as opposed to the metal itself. This topology directs the iridium center to activate a different C-H bond than in the cases of directing donor coordination to the metal. Using this strategy, we demonstrate ortho-regiospecific C-H activation of pyridines and an example of the subsequent functionalization via C-C bond formation.
过渡金属介导的 C-H 功能化已经成为与药物、农化和先进材料合成相关的化学领域中的一种强大方法。由于有机分子通常含有多种类型的 C-H 键,因此选择性 C-H 功能化是一个持续存在的主要挑战。含杂原子的有机分子的 C-H 活化通常通过使用导向效应来实现,其中杂原子的配位将反应性金属中心导向特定的 C-H 键。我们现在报告了一种不同的方法,其中吡啶衍生物中的氮供体直接与金属(铱)中心上直接连接的辅助路易斯酸性硼基配体配位,而不是与金属本身配位。这种拓扑结构将铱中心引导至激活不同于导向供体与金属配位的不同 C-H 键。使用这种策略,我们证明了吡啶的邻位 C-H 活化的区域选择性和随后通过 C-C 键形成进行的功能化的一个例子。