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Framework Copper Catalyzed Oxidative Synthesis of Quinazolinones: A Benign Approach Using Cu3(BTC)2 MOF as an Efficient and Reusable Catalyst

机译:框架铜催化喹唑啉酮的氧化合成:使用Cu3(BTC)2 MOF作为有效且可重复使用的催化剂的良性方法

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A benign and straightforward method to access quinazolinones have been developed using easily preparable Cu3(BTC)2 MOF as a sustainable solid-Lewis acid catalyst under mild condition.Cu3(BTC)2 MOF was prepared and characterized using various analytical tools such as PXRD,FT-IR,SEM,TGA,and ICP-OES.Synthesis of the quinazolinone is catalyzed by the presence of coordinatively unsaturated open Cu~(II)sites in Cu3(BTC)2 MOF using renewable ethanol as a solvent with minimum copper loading(0.07 mmol)without any harsh reaction condition.A series of substituted quinazolinones were synthesized with good to excellent yields.The efficiency of the present framework copper catalysts was rationalized by comparing with other MOFs and homogeneous catalytic systems.The stability of the catalyst was demonstrated by six consecutive runs and heterogeneity test,which was also evidenced from the technical supports such as PXRD,FT-IR and SEM analyses of the recovered catalyst.
机译:在轻度条件下,使用易于制备的Cu3(BTC)2 MOF作为可持续的固体Lewis酸催化剂,已经开发了一种良性且直接的方法。 ft-ir,sem,tga和icp-oes。喹唑啉酮的结合通过使用可再生乙醇作为最小铜载荷(btc)2 MOF中的协调不饱和的开放式Cu〜(ii)催化(II)。 0.07 mmol)没有任何恶劣的反应条件。一系列取代的喹唑啉酮以良好至优异的屈服合成。当前框架铜催化剂的效率通过与其他MOF和均匀的催化系统进行比较来合理化。 连续六次运行和异质性测试,这也是从恢复催化剂的PXRD,FT-IR和SEM分析等技术支持中证明的。

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