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Preparation and catalytic use of platinum in magnetic core/shell nanocomposites

机译:磁性核/壳纳米复合材料中铂的制备及催化应用

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摘要

Platinum (Pt) nanoparticles show high activity as catalysts in various chemical reactions. The control of the morphology of Pt nanostructures can provide an opportunity to improve their catalytic properties. The preparation of Pt-loaded iron-oxide polyvinylbenzyl chloride nanocomposites was done in several stages: first by the formation of the core consisting of magnetite nanoparticles and second by the polymerization of vinylbenzyl chloride in the presence of the magnetic core particles. The third step is the amination of the chlorine group with ammonia, which leads to an ion exchange resin. Then, the Pt precursor (H_2PtCl_6) is attached by ion exchange. Finally, the Pt ions are reduced to Pt metal with NaBH_4. The obtained material can be dispersed easily and be used as a catalyst which can be separated after the reaction by magnetic fields. Characterization of the resulting metallic nanocomposites is evaluated by atomic absorption spectroscopy, thermal gravimetric analysis, transmission electron microscopy, infrared spectroscopy, and gas chromatography. The activity of Pt at magnetic core/shell nanocomposites was measured for the reduction reaction of cinnamaldehyde to cinnamyl alcohol.
机译:铂(Pt)纳米颗粒在各种化学反应中均表现出高催化剂活性。 Pt纳米结构形态的控制可以提供一个机会,以改善其催化性能。负载Pt的氧化铁聚乙烯基苄基氯纳米复合材料的制备分几个阶段进行:首先是形成由磁铁矿纳米颗粒组成的核,其次是在磁性核颗粒的存在下聚合乙烯基苄基氯。第三步是用氨将氯基团胺化,这产生了离子交换树脂。然后,通过离子交换附着Pt前体(H_2PtCl_6)。最后,用NaBH_4将Pt离子还原为Pt金属。所获得的材料可以容易地分散并且可以用作催化剂,其可以在反应后通过磁场分离。通过原子吸收光谱法,热重分析法,透射电子显微镜法,红外光谱法和气相色谱法评估所得金属纳米复合材料的表征。对于肉桂醛向肉桂醇的还原反应,测量了Pt在磁性核/壳纳米复合材料上的活性。

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