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Palladium supported on a novel ordered mesoporous polypyrrole/carbon nanocomposite as a powerful heterogeneous catalyst for the aerobic oxidation of alcohols to carboxylic acids and ketones on water

机译:钯在新颖的介孔聚吡咯/碳纳米复合材料中负载是一种强大的非均相催化剂,用于醇的有氧氧化与羧酸和酮水上的酮

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摘要

Preparation of an ordered mesoporous polypyrrole/carbon (PPy/OMC) composite has been described through a two-step nanocasting process using KIT-6 as a template. Characterization of the PPy/OMC nanocomposite by various analysis methods such as TEM, XRD, TGA, SEM and N _(2) sorption confirmed the preparation of a material with ordered mesoporous structure, uniform pore size distribution, high surface area and high stability. This nanocomposite was then used for the immobilization of palladium nanoparticles. The nanoparticles were almost uniformly distributed on the support with a narrow particle size of 20–25 nm, confirmed by various analysis methods. Performance of the Pd@PPy/OMC catalyst was evaluated in the aerobic oxidation of various primary and secondary alcohols on water as a green solvent, giving the corresponding carboxylic acids and ketones in high yields and excellent selectivity. The catalyst could also be reused for at least 10 reaction runs without losing its catalytic activity and selectivity. High catalytic efficiency of the catalyst can be attributed to a strong synergism between the PPy/OMC and that of supported Pd nanoparticles.
机译:通过使用试剂盒-6作为模板,通过两步纳米占状过程描述了有序介孔聚吡咯/碳(PPY / OMC)复合材料。通过各种分析方法表征PPY / OMC纳米复合材料,如TEM,XRD,TGA,SEM和N _(2)吸附证实了具有有序中孔结构的材料的制备,孔径均匀分布,高表面积和高稳定性。然后将该纳米复合材料用于钯纳米颗粒的固定化。纳米颗粒几乎均匀地分布于较窄的粒径为20-25nm的载体上,通过各种分析方法证实。 Pd @ PPE / OMC催化剂的性能在水作为绿色溶剂上的各种初级和次级醇的好氧氧化中评价,并以高产率和优异的选择性给予相应的羧酸和酮。催化剂也可以重复使用至少10个反应,而不会失去其催化活性和选择性。催化剂的高催化效率可归因于PPY / OMC与支持的PD纳米粒子之间的强协同作用。

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