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Covalent organic frameworks bearing pillar[6]arene-reduced Au nanoparticles for the catalytic reduction of nitroaromatics

机译:轴承柱[6]的共价有机框架[6]芳烃还原的Au纳米粒子用于催化还原硝基甲族

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摘要

While tremendous advancements in 2D materials anchoring Au nanoparticles have been made, it is an urgent challenge to explore a green and facile approach for obtaining small-size Au nanoparticles. The rise of 2D covalent organic framework (COF) presents more-promising candidates for constructing excellent sites for loading metal nanoparticles. In this study, a novel 2D heterogeneous hybrid nanomaterial (P6-Au-COF) based on COF and pillar[6]arene (P6) reduced Au nanoparticles (P6-Au) is prepared by a simple and green procedure. The Au nanoparticles with an average small diameter of 2-3 nm are homogeneously dispersed on the surface of the COF. The P6-Au-COF hybrid material shows highly catalytic performance for the reduction of nitrophenol isomers when compared with commercial Pd/C catalyst and other reported materials. The P6-Au-COF hybrid material exhibits durable recyclablility and stability during the catalytic reaction. Considering the outstanding merits of the heterogeneous 2D catalyst of P6-Au-COF as well as the simple and green preparation, this research might not only present enormous opportunities for stabilized, high-performance and sustainable catalysts, but be applied in other frontier study of sustainable functionalized nanocomposites and advanced materials.
机译:虽然已经进行了锚固Au纳米粒子的2D材料的巨大进展,但探索获得小尺寸Au纳米颗粒的绿色和容易方法是一种紧迫的挑战。 2D共价有机骨架(COF)的兴起呈现出更多有希望的候选者,用于构建用于装载金属纳米颗粒的优异部位。在该研究中,通过简单和绿色的方法制备基于COF和柱[6]芳烃(P6)的新型2D非均相杂化纳米材料(P6-AU-COF)减少Au纳米颗粒(P6-Au)。平均小直径为2-3nm的Au纳米颗粒在COF的表面上均匀分散。与商业PD / C催化剂和其他报道的材料相比,P6-AU-COF杂化材料表明,在与商业Pd / C催化剂和其他材料相比时,对硝基苯酚异构体的降低的高催化性能。 P6-AU-COF混合动力器材料在催化反应期间表现出耐用的再粘合性和稳定性。考虑到P6-Au-COF的异质2D催化剂的出色优点以及简单和绿色的制剂,这项研究可能不仅可以为稳定,高性能和可持续催化剂提供巨大的机会,而且适用于其他前沿研究可持续官能化纳米复合材料和先进材料。

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