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Magnetic covalent hybrid of graphitic carbon nitride and graphene oxide as an efficient catalyst support for immobilization of Pd nanoparticles

机译:石墨氮化物和石墨烯氧化物的磁性共价杂交作为用于固定PD纳米颗粒的有效催化剂载体

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摘要

For the first time a magnetic carbon based hybrid catalyst, Pd@g-C3N4-Fe-GO, is prepared through covalent conjugation of magnetic graphitic carbon nitride and graphene oxide followed by incorporation of Pd nanoparticles. First, the formation of the catalyst was confirmed via XRD, TG, BET, TEM, FTIR, ICP and VSM analyses and then its catalytic activity for promoting Suzuki and Sonogashira coupling reactions under mild reaction condition was investigated. To elucidate whether hybridization of two carbon materials could improve the catalytic activity, the catalytic activity of the catalyst was compared with the control catalysts (Pd@g-C3N4-Fe-GO, Pd@g-C3N4-Fe, Pd@ Fe-GO, Pd@g-C3N4, Pd@GO and the GO/g-C3N4 physical hybrid). Moreover, the role of magnetic nanoparticles in the catalytic performance was confirmed. Notably, the catalytic activities of the catalyst and the control sample prepared via physical hybridization of two carbon materials were compared to confirm the effect of covalent conjugation on the catalytic activity. Moreover, the study of the substituent effect of p-substituted phenyl iodides was considered by Hammett plot, which revealed a beneficial effect of electron-withdrawing side groups for the C-C coupling reaction. Finally, the recyclability of Pd@g-C3N4-Fe-GO as well as leaching of Pd and magnetic nanoparticles was studied.
机译:首次通过磁性石墨氮化碳氮化物和石墨烯的共享缀合,然后掺入Pd纳米颗粒,首次制备磁性碳的杂化催化剂Pd @ G-C3N4-Fe-Go。首先,通过XRD,Tg,BET,TEM,FTIR,ICP和VSM分析来确认催化剂的形成,然后研究其在轻度反应条件下促进Suzuki和Sonogashira偶联反应的催化活性。为了阐明两种碳材料的杂交是否可以改善催化活性,将催化剂的催化活性与对照催化剂进行比较(PD @ G-C3N4-FE-GO,PD @ G-C3N4-FE,PD @ FE-Go ,pd @ g-c3n4,pd @ go和go / g-c3n4物理混合动力。此外,确认了磁性纳米颗粒在催化性能中的作用。值得注意的是,将催化剂和通过物理杂交制备的两种碳材料制备的对照样品进行比较,以确认共价缀合对催化活性的影响。此外,通过Hammett图考虑了P-取代的苯基碘的取代基效应的研究,揭示了电子提取侧基对C-C偶联反应的有益效果。最后,研究了Pd @ g-c3n4-fe-go的再可逆性以及Pd和磁性纳米粒子的浸出。

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