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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >On the promoting role of Ag in selective hydrogenation reactions over Pd-Ag bimetallic catalysts: A theoretical study
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On the promoting role of Ag in selective hydrogenation reactions over Pd-Ag bimetallic catalysts: A theoretical study

机译:Ag在Pd-Ag双金属催化剂上选择性加氢反应中的促进作用:理论研究

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摘要

The surface structure of Pd-Ag alloy and its alteration in the presence of atomic hydrogen have been studied using density functional calculations on Pd1-xAgx(111) (x approximate to 0.2) models. In the absence of an adsorbate, silver atoms are found to segregate on the surface, in line with previous experimental observations under vacuum conditions. At equilibrium, the surface is predicted to expose mainly Ag atoms. Isolated Pd atoms incorporated in this Ag-rich layer appear to be slightly preferred over the Pd-2 dimers. Increasing the coverage of adsorbed H atoms on the Pd-Ag substrate gradually suppresses surface segregation of silver, such that migration of all surface Ag atoms into the subsurface region becomes favorable at a H coverage of similar to 0.25 ML. For the latter structures, with solely Pd atoms in the surface layer and Ag atoms in the subsurface layer, the propensity of H to be accommodated in interstitial sites below the surface layer essentially vanishes: subsurface H atoms are predicted to be energetically driven to escape to the surface without an activation barrier. These results might have strong implications in understanding the promoting role of Ag in selective hydrogenation reactions over Pd-Ag catalysts. The presented adsorbate-induced resegregation in bimetallic systems is a general concept applicable to a broad variety of catalytic systems and advanced materials.
机译:使用Pd1-xAgx(111)(x约0.2)模型的密度泛函计算研究了Pd-Ag合金的表面结构及其在原子氢存在下的变化。在没有吸附质的情况下,发现银原子偏析在表面上,这与先前在真空条件下的实验观察一致。在平衡状态下,预计表面将主要暴露Ag原子。掺入该富Ag层中的分离的Pd原子似乎比Pd-2二聚体稍微优选。在Pd-Ag基板上增加吸附的H原子的覆盖率会逐渐抑制银的表面偏析,因此,当H覆盖率约为0.25 ML时,所有表面Ag原子向亚表面区域的迁移都会变得有利。对于后一种结构,仅在表面层中有Pd原子,在表面下层中只有Ag原子,H被容纳在表面层下的间隙位置的倾向基本上消失了:预测地下H原子将被能量驱动逃逸到表面没有激活屏障。这些结果可能对理解Ag在Pd-Ag催化剂上的选择性加氢反应中的促进作用具有重要意义。提出的双金属体系中吸附物诱导的再离析是适用于多种催化体系和高级材料的一般概念。

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