化学
石墨烯
氧化物
催化作用
部分
分子内力
组合化学
纳米技术
有机化学
材料科学
作者
Khushbu P. Patel,Eknath M. Gayakwad,Vilas Venunath Patil,Ganapati S. Shankarling
标识
DOI:10.1002/adsc.201801673
摘要
Abstract An environmentally friendly, inexpensive, carbocatalyst, graphene oxide (GO) promoted efficient, metal‐free transamidation of various carboxamides with aliphatic, cyclic, and aromatic amines is demonstrated. The protocol is equally applicable to phthalimide, urea, and thioamide determining its adaptability. The oxygenated functionalities such as carbonyl (−C=O), epoxy (−O−), carboxyl (−COOH) and hydroxyl (−OH), present on graphene oxide surface impart acidic properties to the catalyst. The graphene oxide being heterogeneous in nature, work efficiently under solvent‐free reaction conditions providing desired products in good to excellent yields. The one‐pot synthesis of 2,3‐Dihydro‐5H‐benzo[b]‐1,4‐thiazepin‐4‐one moiety by GO catalyzed Aza Michael addition followed by intramolecular transamidation is also described. A plausible reaction mechanistic pathway involving H‐bonding is discussed. The graphene oxide can be recycled and reused up to five cycles without much loss in catalytic activity. magnified image
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