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首页> 外文期刊>Journal of Catalysis >Characterization of Pumice-Supported Ag-Pd and Cu-Pd Bimetallic Catalysts by X-Ray Photoelectron Spectroscopy and X-Ray Diffraction
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Characterization of Pumice-Supported Ag-Pd and Cu-Pd Bimetallic Catalysts by X-Ray Photoelectron Spectroscopy and X-Ray Diffraction

机译:浮石负载的Ag-Pd和Cu-Pd双金属催化剂的X射线光电子能谱和X射线衍射表征

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摘要

Bimetallic Ag-Pd and Cu-Pd catalysts supported on pumice have been prepared in order to be used in the selective hydrogenation of dienes. The catalysts were obtained by the classical impregnation mehtod and in the case of the Cu-Pd system also by organometallic precursors. They were analysed by X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD). XPS allowed us to determine the surface distribution and chemical state of the two elements; XRD yieled the lattice parmaeters and allowed us to established possible formation of alloys. The two bimetallic systems behave differently. In the case of the Ag-Pd catalysts, Pd particles covered by silver atoms along with highly dispersed monometallic Ag particles interacting with the support were formed, without evidence of alloy formation. The possibility of a layer of silver segregated over the palladium particles would explain the Ag 3d binding energy shifts and also the differences between the overall and the surface Ag/Pd atomic ratios. Evidence of alloy formation ws found for the Cu-Pd system obtained by impregnation. Analogously, alloy formation was detected in the organometallic samples reduced at higher temperature. An investigation of the oxidation behaviour of higher temperature. An investigation of the oxidation behaviour of the Cu-Pd catalysts revealed a superior oxidation resistnace of the alloyed particles. The differences between the Ag-Pd and Cu-Pd systems are discussed in terms of interaction with the support.
机译:已经制备了负载在浮石上的双金属Ag-Pd和Cu-Pd催化剂,以用于二烯的选择性加氢。通过经典的浸渍方法获得催化剂,在Cu-Pd体系的情况下,也通过有机金属前体获得。通过X射线光电子能谱(XPS)和X射线衍射(XRD)对它们进行了分析。 XPS使我们能够确定这两种元素的表面分布和化学状态。 XRD屈服了晶格参量,并允许我们建立可能的合金形成。两个双金属系统的行为不同。在Ag-Pd催化剂的情况下,形成了被银原子覆盖的Pd颗粒以及与载体相互作用的高度分散的单金属Ag颗粒,而没有形成合金的迹象。在钯颗粒上偏析出一层银的可能性将解释Ag 3d的结合能移动,以及整体和表面Ag / Pd原子比之间的差异。对于通过浸渍获得的Cu-Pd体系,发现了合金形成的证据。类似地,在较高温度下还原的有机金属样品中检测到合金形成。高温氧化行为的研究。对Cu-Pd催化剂的氧化行为的研究表明,合金颗粒具有优异的抗氧化性。 Ag-Pd和Cu-Pd系统之间的差异是通过与载体的相互作用来讨论的。

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