Kim Daeun, Choi Geunho, Kim Weonjeong, Kim Dongwook, Kang Youn K, Hong Soon Hyeok
Department of Chemistry, Korea Advanced Institute of Science and Technology (KAIST) Daejeon 34141 Republic of Korea
Department of Chemistry, College of Natural Sciences, Seoul National University Seoul 08826 Republic of Korea.
Chem Sci. 2020 Oct 27;12(1):363-373. doi: 10.1039/d0sc05414c.
Control over site-selectivity is a critical challenge for practical application of catalytic C-H functionalization reactions in organic synthesis. Despite the seminal breakthrough of the Pd-catalyzed C(sp)-H arylation of simple arenes a concerted metalation-deprotonation (CMD) pathway in 2006, understanding the site-selectivity of the reaction still remains elusive. Here, we have comprehensively investigated the scope, site-selectivity, and mechanism of the Pd-catalyzed direct C-H arylation reaction of simple arenes. Counterintuitively, electron-rich arenes preferably undergo -arylation without the need for a specifically designed directing group, whereas electron-deficient arenes bearing fluoro or cyano groups exhibit high -selectivity and electron-deficient arenes bearing bulky electron-withdrawing groups favor the -product. Comprehensive mechanistic investigations through a combination of kinetic measurements and stoichiometric experiments using arylpalladium complexes have revealed that the Pd-based catalytic system works a cooperative bimetallic mechanism, not the originally proposed monometallic CMD mechanism, regardless of the presence of a strongly coordinating L-type ligand. Notably, the transmetalation step, which is influenced by a potassium cation, is suggested as the selectivity-determining step.
对于催化C-H官能团化反应在有机合成中的实际应用而言,控制位点选择性是一项关键挑战。尽管2006年钯催化简单芳烃的C(sp)-H芳基化反应通过协同金属化-去质子化(CMD)途径取得了开创性突破,但对该反应位点选择性的理解仍然难以捉摸。在此,我们全面研究了钯催化简单芳烃直接C-H芳基化反应的范围、位点选择性和机理。与直觉相反,富电子芳烃无需特定设计的导向基团即可优先进行β-芳基化,而带有氟或氰基的缺电子芳烃表现出高α-选择性,且带有庞大吸电子基团的缺电子芳烃有利于生成γ-产物。通过结合动力学测量和使用芳基钯配合物的化学计量实验进行的全面机理研究表明,无论是否存在强配位L型配体,基于钯的催化体系均通过双金属协同机理起作用,而非最初提出的单金属CMD机理。值得注意的是,受钾阳离子影响的转金属化步骤被认为是选择性决定步骤。