Cano Rafael, Schmidt Alexander F, McGlacken Gerard P
Department of Chemistry , University College Cork , Cork , Ireland . Email:
Analytical and Biological Chemistry Research Facility , University College Cork , Cork , Ireland.
Chem Sci. 2015 Oct 1;6(10):5338-5346. doi: 10.1039/c5sc01534k. Epub 2015 Jun 19.
The formation of aryl-aryl bonds and heteroaryl analogues is one of the most important C-C bond forming processes in organic chemistry. Recently, a methodology termed Direct Arylation (DA) has emerged as an attractive alternative to traditional cross-coupling reactions (Suzuki-Miyaura, Stille, Negishi, ). A parallel focus of the pharmaceutical and other chemical industries has been on the use heterogeneous catalysis as a favourable substitute for its homogeneous counterpart in cross-coupling reactions. Only very recently has heterogeneous catalysis been proposed and applied, to DA reactions. In this perspective, we consider the terms 'heterogeneous' and 'homogeneous' and the problems associated with their delineation in transition-metal catalysed reactions. We highlight the reports at the interface of DA and heterogeneous catalysis and we comment briefly on the methods used which attempt to classify reaction types as homo- or heterogeneous. In future work we recommend an emphasis be placed on kinetic methods which provide an excellent platform for analysis. In addition two analytical techniques are described which if developed to run with DA reactions would illuminate our understanding of the catalysis. Overall, we provide an entry point, and bring together the mature, yet poorly-understood, subject of heterogeneous catalysis with the rapidly expanding area of DA, with a view towards the acceleration of catalyst design and the understanding of catalyst behaviour.
芳基-芳基键及杂芳基类似物的形成是有机化学中最重要的碳-碳键形成过程之一。最近,一种名为直接芳基化(DA)的方法已成为传统交叉偶联反应(铃木-宫浦反应、施蒂勒反应、根岸反应等)颇具吸引力的替代方法。制药及其他化学工业的一个并行关注点是在交叉偶联反应中使用多相催化作为均相催化的有利替代。直到最近,多相催化才被提出并应用于DA反应。从这个角度出发,我们考虑“多相”和“均相”这两个术语以及在过渡金属催化反应中与它们的界定相关的问题。我们突出DA与多相催化交叉领域的报道,并简要评论用于尝试将反应类型分类为均相或多相的方法。在未来的工作中,我们建议重点关注动力学方法,其为分析提供了一个出色的平台。此外,还描述了两种分析技术,如果能开发使其与DA反应一起运行,将有助于我们对催化作用的理解。总体而言,我们提供了一个切入点,将成熟但理解不足的多相催化主题与迅速发展的DA领域结合起来,以期加速催化剂设计并增进对催化剂行为的理解。