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High-performance sono/nano-catalytic system: CTSN/Fe3O4-Cu nanocomposite, a promising heterogeneous catalyst for the synthesis of N-arylimidazoles

机译:高性能SONO /纳米催化系统:CTSN / FE3O4-CU纳米复合材料,具有合成N-芳基咪唑的有前途的非均相催化剂

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摘要

Herein, a promising heterogeneous nanoscale catalytic system constructed of chitosan (CTSN, as a polymeric basis), iron oxide nanoparticles (Fe3O4 NPs, as the magnetic agent), and copper oxide nanoparticles (CuO NPs, as the main catalytic active site) is presented. Firstly, a convenient synthetic route for preparation of this novel nanocatalyst (CTSN/Fe3O4-Cu) is presented. Further, the synergistic catalytic effect between the novel-designed catalyst and ultrasound waves (USW) in N-arylation coupling reactions of the imidazole derivatives (using various aryl halides) is precisely discussed. Concisely, high reaction yields (98%) have been obtained in short reaction time (10 min) through applying a partial amount (0.01 g) of this nanocatalyst. As the main reason for high catalytic activity of CTSN/Fe3O4-Cu, nanosized cluster-shaped morphology, which provides a wide surface active area, can be expressed. However, as the most distinguished properties of CTSN/Fe3O4-Cu catalytic system, high convenience in separation and excellent reusability could be mentioned. CTSN/Fe3O4-Cu nanocomposite can be easily recovered by using an external magnet and reused at least for eight times with no significant decline in the catalytic activity. Structural characterizations of this novel system have been done by various analytical methods and the obtained results have been well interpreted in the context.
机译:本文中,提出了一种壳聚糖(CTSN,作为聚合物基础),氧化铁纳米颗粒(作为磁性剂)和氧化铜纳米颗粒(CuO NPS,作为主要催化活性位点)构成的承诺的异质纳米级催化系统。 。首先,提出了一种方便的制备该新型纳米催化剂(CTSN / Fe 3 O 4-Cu)的合成途径。此外,精确地讨论了新型设计的催化剂和超声波(USW)在咪唑衍生物(使用各种芳基卤化物)的N-芳基化偶联反应之间的协同催化效应。简明扼要地,通过施加该纳米催化剂的部分量(0.01g),在短反应时间(10分钟)中获得高反应产率(98%)。作为CTSN / Fe 3 O 4-Cu的高催化活性的主要原因,可以表达提供宽表面活性面积的纳米簇形形态。然而,作为CTSN / Fe 3 O 4-Cu催化系统的最杰出特性,可以提及分离的高便利性和优异的可重用性。通过使用外部磁铁可以容易地回收CTSN / Fe 3 O 4-Cu纳米复合材料,并至少重复使用八次,催化活性没有显着下降。通过各种分析方法完成了这种新系统的结构特征,并且在上下文中得到了得到的结果。

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    《RSC Advances》 |2019年第69期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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  • 入库时间 2022-08-19 17:45:27

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