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EPR study of vanadium-loaded yttrium-cerium-zirconium solid solutions

机译:钒载钇铈锆锆固溶体的EPR研究

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摘要

5YO1.5-10CeO2-85ZrO2 solid solution doped with vanadium was studied by means of electron paramagnetic resonance (EPR). The nature of the vanadium species formed by treatment of samples with O2, CO, and H2 was investigated. Three types of paramagnetic V4+ ions found in samples evacuated at 723 K have been attributed to tetragonally compressed octahedral complexes of vanadyl type with different interionic V–O distances. Two of them are supposed to be located on the surface of the oxide support, whereas the third type is in the bulk of the solid. EPR spectroscopy of all CO reduced samples showed the presence of isolated mononuclear V4+ species. Reducing treatment of the samples with H2 also provoked the formation of aggregated V4+ species. The later species formed either by the agglomeration of surface isolated V4+ ions during high-temperature treatment or the reduction of polymerized V5+ species present in as-prepared samples. Obtained results can be used for the better understanding of vanadium effect on catalysts properties.
机译:通过电子顺磁共振(EPR)研究了钒掺杂的5YO1.5 -10CeO2 -85ZrO2 固溶体。研究了用O2 ,CO和H2 处理样品形成的钒物种的性质。在以723 K抽真空的样品中发现的三种顺磁性V4 +离子归因于具有不同离子间V–O距离的钒基类型的四方压缩八面体络合物。它们中的两个应该位于氧化物载体的表面上,而第三个类型则位于固体中。所有还原的CO样品的EPR光谱表明存在分离的单核V4 + 物种。用H2 还原样品也引起了聚集的V4 + 物种的形成。后一种物质是由于在高温处理过程中表面分离的V4 +离子的团聚或制备样品中存在的聚合V5 + 物种的减少而形成的。所得结果可用于更好地理解钒对催化剂性能的影响。

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  • 来源
    《Journal of Materials Science》 |2003年第9期|1967-1974|共8页
  • 作者单位

    Laboratoire de Catalyse et Environnement EA 2598 Université du Littoral-Côte d'Opale MREID 145 Av. Maurice Schumann;

    Laboratoire de Catalyse et Environnement EA 2598 Université du Littoral-Côte d'Opale MREID 145 Av. Maurice Schumann;

    Laboratory of Radiospectroscopy Institute of Nuclear Physics Moscow State University;

    Laboratory of Radiospectroscopy Institute of Nuclear Physics Moscow State University;

    Laboratory of Catalysis and Gas Electrochemistry Chemistry Department Moscow State University;

    Laboratory of Catalysis and Gas Electrochemistry Chemistry Department Moscow State University;

    Laboratory of Catalysis and Gas Electrochemistry Chemistry Department Moscow State University;

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