首页> 外文期刊>ACS Omega >Unprecedented Concomitant Formation of Cu2O–CD Nano-Superstructures During the Aerobic Oxidation of Alcohols and Their Catalytic Use in the Propargylamination Reaction: A Simultaneous Catalysis and Metal Waste Valorization (SCMWV) Method
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Unprecedented Concomitant Formation of Cu2O–CD Nano-Superstructures During the Aerobic Oxidation of Alcohols and Their Catalytic Use in the Propargylamination Reaction: A Simultaneous Catalysis and Metal Waste Valorization (SCMWV) Method

机译:酒精好氧氧化过程中Cu 2 O-CD纳米超结构的前所未有的伴随形成及其在炔丙基化反应中的催化应用:同时催化和金属废物平衡(SCMWV)方法

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Copper–cyclodextrins (CDs)-catalyzed aerobic oxidation of alcohols under aqueous conditions and a concomitant formation of Cu_(2)O–cyclodextrin nano-superstructures (Cu_(2)O–CD nps) during the reaction are reported. The use of affordable copper and cyclodextrin combination for aerobic oxidation precluding organic solvents makes it a benign methodology. Intriguingly, a diverse array of Cu_(2)O–CD nps with unique morphologies was obtained by varying copper salts, cyclodextrins, and bases. The nano-superstructures were characterized by different techniques, such as X-ray diffraction, X-ray photoelectron spectroscopy, differential scanning calorimetry-thermogravimetric analysis, scanning electron microscopy, time of flight secondary-ion mass spectrometry, and transmission electron microscopy to confer their authenticity. Interestingly, the nano-superstructures showed promising catalytic efficiency for a one-pot three-component propargylamination reaction. The used particles were found to be recoverable and recyclable for propargylamination for up to three cycles, with no loss of catalytic activity. Moreover, the concomitant formation of Cu_(2)O–CD nanostructures and their self-segregation during an aerobic oxidation reaction under homogenous conditions is a first-of-its-kind method depicting simultaneous catalysis and metal waste valorization (SCMWV). Overall, this new approach of reaping the benefits of homogenous metal catalysis and simultaneously sequestrating the metal into a high-value product might pave the way to develop many such SCMWV protocols in future.
机译:据报道,铜-环糊精(CDs)在水性条件下对醇的需氧氧化和反应期间伴随形成的Cu_(2)O-环糊精纳米超结构(Cu_(2)O-CD nps)形成。使用价格可承受的铜和环糊精的组合进行有氧氧化(排除有机溶剂)使其成为一种良性方法。有趣的是,通过改变铜盐,环糊精和碱,获得了具有独特形态的多种Cu_(2)O–CD nps。通过不同的技术对纳米超结构进行表征,例如X射线衍射,X射线光电子能谱,差示扫描量热法,热重分析,扫描电子显微镜,飞行时间二次离子质谱和透射电子显微镜等真实性。有趣的是,纳米超结构对一锅三组分炔丙基层压反应显示出有希望的催化效率。发现用过的颗粒可回收并可再循环用于丙炔层压多达三个循环,而没有催化活性的损失。此外,Cu_(2)O–CD纳米结构的伴随形成和它们在均质条件下的好氧氧化反应过程中的自分离是描述同步催化和金属废物增值(SCMWV)的同类方法中的首创。总的来说,这种获得均相金属催化作用的好处同时将金属螯合成高价值产品的新方法可能为将来开发许多此类SCMWV方案铺平道路。

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