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首页> 外文期刊>Journal of nanoscience and nanotechnology >One-Pot Polyol Synthesis of Pt/CeO2 and Au/CeO2 Nanopowders as Catalysts for CO Oxidation
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One-Pot Polyol Synthesis of Pt/CeO2 and Au/CeO2 Nanopowders as Catalysts for CO Oxidation

机译:一锅多元醇合成Pt / CeO2和Au / CeO2纳米粉体作为CO氧化催化剂

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The facile one-pot synthesis of CeO2-based catalysts has been developed to prepare a relatively large amount of nanopowders with relevant catalytic activity towards CO oxidation. The method consists of a two-steps process carried out in ethylene glycol: in the first step, 5 nm well-crystallized pure CeO2 is prepared. In a subsequent second step, a salt of a noble metal is added to the CeO2 suspension and the deposition of the noble metal on the nanocrystalline CeO2 is induced by heating. Two catalysts were prepared: Pt/CeO2 and Au/CeO2. The as-prepared catalysts, the thermally treated catalysts, as well as the pure CeO2, are characterized by XRD, TGA, XPS, FTIR, HR-TEM, STEM, particle size distribution, and N-2-physisorption. In spite of the identical preparation protocol, Au and Pt behave in a completely different way: Au forms rather large particles, most of them with triangular shape, easily identifiable and dispersed in the CeO2 matrix. In contrast, Pt was not identified as isolated particles. The high resolution X-ray diffraction carried out on the Pt/CeO2 thermally treated sample (500 degrees C for 1 h) shows a significant CeO2 lattice shrinkage, which can be interpreted as an at least partial incorporation of Pt into the CeO2 crystal lattice. Moreover, only Pt2+ and Pt4+ species were identified by XPS. In literature, the incorporation of Pt into the CeO2 lattice is supported by first-principle calculations and experimentally demonstrated only by combustion synthesis methods. To the best of our knowledge this is the first report where ionically dispersed Pt into the CeO2 lattice is obtained via a liquid synthesis method. The thermally treated Pt/CeO2 sample revealed good activity with 50% CO conversion at almost room temperature.
机译:已经开发了基于CeO 2的催化剂的简单一锅合成方法,以制备相对大量的具有对CO氧化的相关催化活性的纳米粉。该方法由在乙二醇中进行的两步过程组成:第一步,制备5 nm结晶良好的纯CeO2。在随后的第二步骤中,将贵金属的盐添加到CeO 2悬浮液中,并通过加热诱导贵金属在纳米晶体CeO 2上的沉积。制备了两种催化剂:Pt / CeO2和Au / CeO2。所制备的催化剂,热处理的催化剂以及纯CeO2的特征在于XRD,TGA,XPS,FTIR,HR-TEM,STEM,粒度分布和N-2-物理吸附。尽管制备方法相同,但Au和Pt的行为完全不同:Au形成较大的颗粒,其中大多数呈三角形,易于识别并分散在CeO2基质中。相反,Pt未鉴定为分离的颗粒。在经过Pt / CeO2热处理的样品(500摄氏度,1小时)上进行的高分辨率X射线衍射显示出明显的CeO2晶格收缩,这可以解释为Pt至少部分掺入了CeO2晶格中。此外,通过XPS只能识别Pt2 +和Pt4 +物种。在文献中,Pt掺入CeO2晶格是由第一性原理计算支持的,并且仅通过燃烧合成方法进行了实验证明。据我们所知,这是第一个报告,其中通过液体合成方法将Pt离子分散到CeO2晶格中。经过热处理的Pt / CeO2样品在几乎室温下显示出良好的活性,CO转化率为50%。

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