Special Centre for Molecular Medicine, Jawaharlal Nehru University, New Delhi 110067, India.
Department of Applied Sciences, Indian Institute of Information Technology, Allahabad 211012, India.
J Org Chem. 2021 Jan 15;86(2):1330-1356. doi: 10.1021/acs.joc.0c02151. Epub 2020 Dec 24.
Sequence-specific -arylation strategies have important applications in medicinal and material research. These strategies allow C-C bond formations in a regioselective manner to synthesize large molecular libraries for studying structure-activity profiles. The past decade has seen the development of single C-C bond forming reactions using various transition-metal catalysts, cryogenic metalation strategies, and metal-free methods. Sequential arylations of heterocycles allow for the formation of multiaryl derivatives and are a preferred choice over de novo synthetic routes. This perspective sheds light on recent strategic advances to develop various sequential synthetic routes for the multiarylation of heteroarenes. This perspective addresses many challenges in optimizing sequential routes with respect to catalysts, reaction parameters, and various strategies adopted to obtain diversely arylated products.
序列特异性芳基化策略在医学和材料研究中具有重要的应用。这些策略允许以区域选择性的方式形成 C-C 键,以合成用于研究结构-活性关系的大型分子文库。过去十年中,人们利用各种过渡金属催化剂、低温金属化策略和无金属方法开发了单 C-C 键形成反应。杂环的顺序芳基化允许形成多芳基衍生物,并且是优于从头合成路线的首选。本观点介绍了最近在开发各种杂芳烃多芳基化的顺序合成途径方面的战略进展。本观点针对催化剂、反应参数以及为获得不同芳基化产物而采用的各种策略,讨论了优化顺序途径所面临的许多挑战。