Simonetti Marco, Kuniyil Rositha, Macgregor Stuart A, Larrosa Igor
School of Chemistry , University of Manchester , Oxford Road , Manchester M13 9PL , U.K.
Institute of Chemical Sciences , Heriot-Watt University , Edinburgh EH14 4AS , U.K.
J Am Chem Soc. 2018 Sep 19;140(37):11836-11847. doi: 10.1021/jacs.8b08150. Epub 2018 Sep 5.
The first Ru(II)-catalyzed arylation of substrates without a directing group was recently developed. Remarkably, this process only worked in the presence of a benzoate additive, found to be crucial for the oxidative addition step at Ru(II). However, the exact mode of action of the benzoate was unknown. Herein, we disclose a mechanistic study that elucidates the key role of the benzoate salt in the C-H arylation of fluoroarenes with aryl halides. Through a combination of rationally designed stoichiometric experiments and DFT studies, we demonstrate that the aryl-Ru(II) species arising from initial C-H activation of the fluoroarene undergoes cyclometalation with the benzoate to generate an anionic Ru(II) intermediate. The enhanced lability of this intermediate, coupled with the electron-rich anionic Ru(II) metal center renders the oxidative addition of the aryl halide accessible. The role of an additional (NMe)OC(CF) additive in facilitating the overall arylation process is also shown to be linked to a shift in the C-H pre-equilibrium associated with benzoate cyclometalation.
最近开发了首例无导向基团底物的Ru(II)催化芳基化反应。值得注意的是,该反应仅在存在苯甲酸盐添加剂的情况下才能进行,已发现该添加剂对Ru(II)的氧化加成步骤至关重要。然而,苯甲酸盐的确切作用方式尚不清楚。在此,我们披露了一项机理研究,阐明了苯甲酸盐在氟代芳烃与芳基卤化物的C-H芳基化反应中的关键作用。通过合理设计的化学计量实验和密度泛函理论(DFT)研究相结合,我们证明了氟代芳烃初始C-H活化产生的芳基-Ru(II)物种与苯甲酸盐发生环金属化反应,生成阴离子Ru(II)中间体。该中间体增强的活性,再加上富电子的阴离子Ru(II)金属中心,使得芳基卤化物的氧化加成变得可行。还表明额外的(NMe)OC(CF)添加剂在促进整个芳基化过程中的作用与苯甲酸盐环金属化相关的C-H预平衡的移动有关。