Department of Chemical Sciences, Indian Institute of Science Education and Research Mohali, SAS Nagar, 140306 Mohali, India.
J Org Chem. 2020 Dec 4;85(23):14971-14979. doi: 10.1021/acs.joc.0c01819. Epub 2020 Nov 11.
Dehydrogenative coupling-based reactions have emerged as an efficient route toward the synthesis of a plethora of heterocyclic rings. Herein, we report an efficacious, nickel-catalyzed synthesis of two important heterocycles such as quinoline and quinoxaline. The catalyst is molecularly defined, is phosphine-free, and can operate at a mild reaction temperature of 80 °C. Both the heterocycles can be easily assembled double dehydrogenative coupling, starting from 2-aminobenzyl alcohol/1-phenylethanol and diamine/diol, respectively, in a shorter span of reaction time. This environmentally benign synthetic protocol employing an inexpensive catalyst can rival many other transition-metal systems that have been developed for the fabrication of two putative heterocycles. Mechanistically, the dehydrogenation of secondary alcohol follows clean pseudo-first-order kinetics and exhibits a sizable kinetic isotope effect. Intriguingly, this catalyst provides an example of storing the trapped hydrogen in the ligand backbone, avoiding metal-hydride formation. Easy regeneration of the oxidized form of the catalyst under aerobic/O oxidation makes this protocol eco-friendly and easy to handle.
基于脱氢偶联的反应已成为合成大量杂环的有效途径。在此,我们报道了一种高效、镍催化的喹啉和喹喔啉两种重要杂环的合成方法。该催化剂具有明确的分子结构,不含膦,反应温度可温和至 80°C。这两种杂环都可以很容易地通过双脱氢偶联反应,分别从 2-氨基苄醇/1-苯乙醇和二胺/二醇在较短的反应时间内组装而成。这种使用廉价催化剂的环保合成方法可以与许多其他已开发用于制备两种假定杂环的过渡金属体系相媲美。从机理上看,仲醇的脱氢反应遵循干净的准一级动力学,表现出相当大的动力学同位素效应。有趣的是,这种催化剂提供了一个在配体骨架中储存捕获氢的例子,避免了金属氢化物的形成。在有氧/O 氧化条件下,催化剂的氧化形式可以很容易地再生,使得该方法具有环保和易于操作的优点。