Yu Jin-Tao, Pan Changduo
School of Petrochemical Engineering, Advanced Catalysis and Green Manufacturing Collaborative Innovation Center, Changzhou University, Changzhou 213164, P. R. China.
School of Chemistry & Environmental Engineering, Jiangsu University of Technology, Changzhou 213001, P. R. China.
Chem Commun (Camb). 2016 Feb 7;52(11):2220-36. doi: 10.1039/c5cc08872k.
Heterocyclic compounds are widely present in natural products, pharmaceuticals and bioactive molecules. Thus, organic and pharmaceutical chemists have been making extensive efforts to construct those heterocyclic frameworks through developing versatile and efficient synthetic strategies. The direct C-H functionalization via the radical pathway has emerged as a promising and dramatic approach towards heterocycles with high atom- and step-economy. Heterocyclic compounds such as coumarins, furans, benzofurans, xanthones, benzothiazoles, indoles, indolines, oxindoles, quinolines, isoquinolines, quinoxaline, and phenanthridines have been successfully synthesized by C-H functionalization through the radical pathway. In this review, recent advances on radical C-H functionalization to construct heterocyclic compounds are highlighted with discussions.
杂环化合物广泛存在于天然产物、药物和生物活性分子中。因此,有机化学家和药物化学家一直在通过开发通用且高效的合成策略,为构建这些杂环骨架做出大量努力。经由自由基途径的直接C-H官能化已成为一种具有前景且引人注目的方法,可用于构建具有高原子经济性和步骤经济性的杂环化合物。通过自由基途径的C-H官能化已成功合成了香豆素、呋喃、苯并呋喃、呫吨酮、苯并噻唑、吲哚、二氢吲哚、氧化吲哚、喹啉、异喹啉、喹喔啉和菲啶等杂环化合物。在本综述中,将重点讨论通过自由基C-H官能化构建杂环化合物的最新进展。