Parida Sushanta Kumar, Hota Sudhir Kumar, Kumar Raushan, Murarka Sandip
Department of Chemistry, Indian Institute of Technology Jodhpur, Karwar, 342037, Rajasthan, India.
Chem Asian J. 2021 Apr 19;16(8):879-889. doi: 10.1002/asia.202100151. Epub 2021 Mar 16.
Synthetic methods enabling late-stage modification of heterocycles hold tremendous importance in the pharmaceutical and agrochemical industry and drug discovery. Accordingly, efficient, functional group tolerant and selective late-stage alkylation of valuable molecular entities is of enormous significance and well-acknowledged in medicinal chemistry. Radical alkylation of heteroarenes employing carboxylic acids as the alkyl radical precursor represents one of the most direct ways of C-H functionalizations of heterocycles. Recently, the field has undergone a revolutionary development especially with regard to the generation of alkyl radicals under much milder conditions. In this regard N-(acyloxy)phthalimides (NHPI esters) have emerged as a suitable precursor of a diverse set of alkyl radicals allowing formal C-H alkylation of not only N-heteroarenes but a diverse set of non-aromatic heterocycles under visible light photocatalysis or electrochemical conditions. This review delineates all these discoveries and provides readers a comprehensive overview of this rapidly expanding field.
能够实现杂环后期修饰的合成方法在制药、农用化学品行业以及药物发现中具有极其重要的意义。因此,高效、官能团耐受性好且具有选择性的有价值分子实体的后期烷基化在药物化学中具有重大意义且得到广泛认可。利用羧酸作为烷基自由基前体对杂芳烃进行自由基烷基化是杂环C-H官能化最直接的方法之一。最近,该领域经历了革命性的发展,尤其是在更温和的条件下生成烷基自由基方面。在这方面,N-(酰氧基)邻苯二甲酰亚胺(NHPI酯)已成为多种烷基自由基的合适前体,不仅能在可见光光催化或电化学条件下实现N-杂芳烃的形式C-H烷基化,还能实现多种非芳香族杂环的形式C-H烷基化。本综述阐述了所有这些发现,并为读者提供了这个迅速发展领域的全面概述。