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Effects of Promoter on Structural and Surface Properties of Zirconium Oxide-Based Catalyst Materials

机译:助剂对氧化锆基催化剂材料结构和表面性能的影响

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摘要

Ternary mixed oxide systems CuO/ZnO/ZrO and CuO/NiO/ZrO were synthesized by one-pot synthesis for a better understanding of the synthesis-property relationships of zirconium oxide-based catalyst materials. The prepared mixed oxide samples were analysed by a broad range of characterisation methods (XRD, N -physisorption, Temperature-Programmed Ammonia Desorption (TPAD), and XPS) to examine the structural and surface properties, as well as to identify the location of the potential catalytically active sites. By XPS analysis, it could be shown that a progressive enrichment of the surface composition with copper takes place by changing from ZnO to NiO as a promoter. Thus, by addition of the second component, not only electronic but also the geometric properties of active sites, i.e., copper species distribution within the catalyst surface, can be affected in a desired way.
机译:通过一锅法合成三元混合氧化物体系CuO / ZnO / ZrO和CuO / NiO / ZrO,以更好地了解氧化锆基催化剂材料的合成-性能关系。通过广泛的表征方法(XRD,N物理吸附,程序升温氨解吸(TPAD)和XPS)对制备的混合氧化物样品进行分析,以检查其结构和表面特性,并确定其位置。潜在的催化活性位点。通过XPS分析,可以表明通过从ZnO变为NiO作为促进剂,铜逐渐富集了表面成分。因此,通过添加第二组分,不仅可以以期望的方式影响活性部位的电子性质,而且还可以影响活性部位的几何性质,即催化剂表面内的铜种类分布。

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