Department of Chemistry and Biochemistry, North Dakota State University, Fargo, North Dakota 58102, USA.
Department of Chemistry, University of California, Berkeley, California 94720, USA.
Nat Chem. 2016 Dec;8(12):1144-1151. doi: 10.1038/nchem.2602. Epub 2016 Sep 5.
Regioselective activation of aromatic C-H bonds is a long-standing challenge for arene functionalization reactions such as the hydroarylation of alkynes. One possible solution is to employ a removable directing group that activates one of several aromatic C-H bonds. Here we report a new catalytic method for regioselective alkyne hydroarylation with benzoic acid derivatives during which the carboxylate functionality directs the alkyne to the ortho-C-H bond with elimination in situ to form a vinylarene product. The decarboxylation stage of this tandem sequence is envisioned to proceed with the assistance of an ortho-alkenyl moiety, which is formed by the initial alkyne coupling. This ruthenium-catalysed decarboxylative alkyne hydroarylation eliminates the common need for pre-existing ortho-substitution on benzoic acids for substrate activation, proceeds under redox-neutral and relatively mild conditions, and tolerates a broad range of synthetically useful aromatic functionality. Thus, it significantly increases the synthetic utility of benzoic acids as easily accessible aromatic building blocks.
区域选择性地活化芳环 C-H 键是芳环官能化反应(如炔烃的 hydroarylation)的长期挑战。一种可能的解决方案是使用可去除的导向基团来活化几个芳环 C-H 键之一。在这里,我们报道了一种新的催化方法,用于在苯甲酸衍生物存在下进行炔烃的区域选择性 hydroarylation,其中羧酸酯官能团将炔烃导向邻位 C-H 键,同时原位消除以形成乙烯基芳烃产物。该串联序列的脱羧阶段预计在邻烯基部分的协助下进行,该部分通过初始炔烃偶联形成。这种钌催化的脱羧炔烃 hydroarylation 消除了对苯甲酸进行预取代以活化底物的常见需求,在氧化还原中性和相对温和的条件下进行,并且耐受广泛的合成有用的芳族官能团。因此,它大大提高了苯甲酸作为易于获得的芳族构建块的合成实用性。