College of Pharmacy, Nantong University, 19 Qixiu Road, Nantong 226001, People's Republic of China.
Org Biomol Chem. 2018 Oct 3;16(38):7012-7018. doi: 10.1039/c8ob01474d.
A metal-free cyclization of N-propargylamides for the synthesis of various oxazolines and oxazoles via a 5-exo-dig process is presented. Using (diacetoxyiodo)benzene (PIDA) as a reaction promoter and lithium iodide (LiI) as an iodine source, intramolecular iodooxygenation of N-propargylamides proceeded readily, leading to the corresponding (E)-5-iodomethylene-2-oxazolines in good to excellent isolated yields. In addition, using the PhI(OAc)2/LiI system, N-propargylamides can be converted to the corresponding oxazole-5-carbaldehydes in the presence of oxygen under visible light irradiation. The resulting products can be further converted into various oxazoline and oxazole derivatives after simple derivatizations, and this method ultimately offers an efficient route to a variety of biologically active structures.
本文提出了一种通过 5-exo-dig 过程,从 N-炔丙酰胺出发,不使用金属催化剂,合成各种唑啉和唑类化合物的方法。该方法以二乙酰氧基碘苯(PIDA)作为反应促进剂,碘化锂(LiI)作为碘源,N-炔丙酰胺的分子内碘氧代反应很容易进行,以良好至优异的分离产率得到相应的(E)-5-亚甲基-2-唑啉。此外,在可见光照射下,使用 PhI(OAc)2/LiI 体系,N-炔丙酰胺在氧气存在下可以转化为相应的唑-5-醛。所得产物经简单衍生化后可进一步转化为各种唑啉和唑类衍生物,该方法最终为多种具有生物活性的结构提供了一种有效的合成途径。