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Properties of cerium-zirconium mixed oxides partially substituted by neodymium: Comparison with Zr-Ce-Pr-O ternary oxides

机译:钕部分取代的铈锆混合氧化物的性质:与Zr-Ce-Pr-O三元氧化物的比较

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CeO2 doped with praseodymium, neodymium and/or zirconium atoms were prepared by coprecipitation and by the sol-gel method. Structural properties were investigated by in situ XRD and Raman spectroscopy while oxygen storage capacity (OSC) was measured by transient CO oxidation. All the compounds, except pure Nd2O3, have a fluorite-type structure as well as a Raman band at 560 cm(-1) characteristic of the oxygen vacancies involving non-stoichiometric oxides. The lattice parameter under hydrogen, being dependent on the temperature, revealed two reduction mechanisms: one at a low temperature at the surface and another at a high temperature in the bulk. Ce-Nd binary oxides show a strong tendency towards crystallite aggregation, which reduces accessibility to gases and OSC properties. Zirconium improves the thermal resistance to sintering of both Ce-Nd and Ce-Pr oxides. The Zr-Ce-Pr-O followed by Zr-Ce-Nd-O compounds displaying high oxygen mobility at a low temperature, appear to be very promising for practical applications such as OSC materials. (c) 2006 Elsevier Inc. All rights reserved.
机译:通过共沉淀和溶胶-凝胶法制备了掺有,、钕和/或锆原子的CeO2。通过原位XRD和拉曼光谱研究结构性能,同时通过瞬时CO氧化测量储氧量(OSC)。除纯Nd2O3外,所有化合物均具有萤石型结构以及在560 cm(-1)处具有涉及非化学计量氧化物的氧空位的拉曼光谱。氢下的晶格参数取决于温度,揭示了两种还原机理:一种在表面上处于低温状态,另一种在整体中处于高温状态。 Ce-Nd二元氧化物显示出很强的微晶聚集趋势,这降低了气体的可及性和OSC特性。锆提高了Ce-Nd和Ce-Pr氧化物烧结的耐热性。 Zr-Ce-Pr-O继之以Zr-Ce-Nd-O化合物在低温下表现出高的氧迁移率,对于OSC材料等实际应用而言似乎很有希望。 (c)2006 Elsevier Inc.保留所有权利。

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