首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Ligand-free copper-catalyzed O-arylation of aryl halides using impregnated copper ferrite on mesoporous graphitic carbon nitride as a robust and Cheek magnetic heterogeneous catalyst
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Ligand-free copper-catalyzed O-arylation of aryl halides using impregnated copper ferrite on mesoporous graphitic carbon nitride as a robust and Cheek magnetic heterogeneous catalyst

机译:使用浸渍的铜铁素体在中孔石墨氮化物上使用浸渍铜铁素体的芳基卤化物的无配体铜催化的O-芳基,作为鲁棒和脸颊磁性异质催化剂

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摘要

In this study, a magnetic and heterogeneous nanocatalyst based on in situ synthesis of CuFe2O4 supported on mesoporous graphitic carbon nitride (mpg-C3N4) was developed. This mesoporous nanocomposite was well characterized via standard analysis methods. This catalyst was applied under simple and ligand-free condition in Ullmann-type arylation reaction to afford a vast variety of target o-arylated products in satisfactory yields. It should be noted that working under an inert atmosphere was not required for this coupling reaction. The control experiment showed that mpg-C3N4 was a key factor to proceed the reaction and the XPS analysis confirmed this role. Moreover, owing to stability and magnetically separatability of CuFe2O4/g-C3N4, this nanocomposite could be easily separated by an external magnet and reused for five cycles without loss of its high activities during cycles.
机译:在该研究中,开发了基于原位合成介孔石墨碳氮化碳(MPG-C3N4)的磁性和异质纳米催化剂。 通过标准分析方法,该介孔纳米复合材料很好地表征。 该催化剂在Ullmann型芳基化反应中的简单和配体的条件下施用,以提供多种靶标O-芳基化产物,以令人满意的产率。 应注意,该偶联反应不需要在惰性气氛下工作。 对照实验表明,MPG-C3N4是进行反应的关键因素,XPS分析证实了这一作用。 此外,由于CuFe2O4 / G-C3N4的稳定性和磁性可分离性,该纳米复合材料可以通过外部磁体容易地分离,并在循环期间重复使用5个循环而不会损失其高活性。

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