Department of Chemistry, School of Natural Sciences, Shiv Nadar Institute of Eminence Deemed to be University, Dadri, Chithera, Gautam Buddha Nagar 201314, UP, India.
J Org Chem. 2022 Sep 16;87(18):12164-12174. doi: 10.1021/acs.joc.2c01309. Epub 2022 Aug 31.
An efficient copper-catalyzed solvent-free multicomponent reaction for pyridine derivatives, iodonium ylides, and 1,4-quinones is developed a room-temperature ball milling technique. The reported protocol provides a sustainable synthesis of isoindolo[2,1-a]pyridine/isoquinoline class of molecules in good to excellent yield in a mixer mill (RETSCH MM400) engaging the commercially available copper acetate (Cu(OAc)) as a catalyst without the use of organic solvents. It tolerates a myriad of electron-rich and electron-deficient functionalities on the pyridine moiety. The scalability of the protocol was illustrated by successfully performing the reaction in the gram scale. The photoluminescence and related cellular study revealed that these can be used as a fluorescent chromophore-based cellular probe. A clean reaction profile and a facile experimental setup that is devoid of anhydrous reaction conditions and toxic organic solvents have established the advantages of this strategy over the reported process.
一种高效的无溶剂多组分反应,用于吡啶衍生物、碘𬭩盐叶立德和 1,4-醌,是在室温球磨技术下开发的。该报道的方案提供了一种可持续的异吲哚[2,1-a]吡啶/异喹啉类分子的合成方法,在混合研磨机(RETSCH MM400)中,以市售的醋酸铜(Cu(OAc))为催化剂,在没有使用有机溶剂的情况下,以良好到优异的收率得到产物。该方法对吡啶部分上的各种富电子和缺电子官能团具有耐受性。通过成功地在克级规模上进行反应,展示了该方案的可扩展性。光致发光和相关的细胞研究表明,这些可以用作基于荧光生色团的细胞探针。干净的反应谱和简单的实验设置,没有无水反应条件和有毒有机溶剂,确立了这种策略相对于报道的方法的优势。