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Ionic Liquid-Mediated-Fe2O3 Shape-Controlled Nanocrystal-Supported Noble Metals: Highly Active Materials for CO Oxidation

机译:离子液 - 介导的-FE2O3形状控制的纳米晶体负载贵金属:具有共同氧化的高活性材料

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Shape-controlled iron oxide nanocrystals were prepared by using an ionic liquid-mediated hydrothermal process. Different morphologies can be synthesised, such as cubes and porous nanotubes. Owing to the different morphologies developed, accessible surface area varies from a few m2g-1 to more than 50m2g-1. These differences result in different oxygen mobilities, and the porous nanorods demonstrate the highest bulk oxygen mobility. Thus, all these shaped materials demonstrate higher activity for the oxidation reaction compared to the commercial reference. In addition, the favourable physical properties, that is high surface area, enable the easy dispersion of noble metal nanoparticles (platinum, palladium and gold); some of these high-surface area noble metal-containing materials demonstrate remarkable catalytic activities. Porous nanorod-supported gold nanoparticles enable the conversion of CO below 100 degrees C, which is far better than on commercial -Fe2O3-supported gold for which dispersion of gold remains difficult owing to the low surface area of the commercial support.
机译:通过使用离子液体介导的水热法制备形状控制的氧化铁纳米晶体。可以合成不同的形态,例如立方体和多孔纳米管。由于不同的形态学,可移位的表面积从几M2G-1变化到50m2G-1。这些差异导致不同的氧气迁移率,并且多孔纳米棒展示了最高的散氧迁移率。因此,与商业参考相比,所有这些形状的材料都表现出氧化反应的更高活性。此外,具有高表面积的有利物理性质,使得贵金属纳米颗粒(铂,钯和金)易于分散;这些高表面积贵金属材料中的一些含有显着的催化活性。多孔纳米棒支撑的金纳米颗粒使得CO以下的转化率低于100℃,这远远优于商业-FE2O3负载的金,由于商业支持的低表面积,黄金的分散仍然困难。

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