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The effect of alloying on the H-atom adsorption on the (100) surfaces of Pd-Ag, Pd-Pt, Pd-Au, Pt-Ag, and Pt-Au. A theoretical study

机译:合金化对Pd-Ag,Pd-Pt,Pd-Au,Pt-Ag和Pt-Au的(100)表面H原子吸附的影响。理论研究

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The effect of alloying on the adsorption of atomic hydrogen was studied using density functional theory (DFT). In the study the (100) surfaces of Pd-Ag, Pd-Pt, Pd-Au, Pt-Ag, and Pt-Au alloys were considered by means of a cluster model. The structural and energetic properties of the H atom adsorbed on the Pd4Me (Me = Ag, Pt, Au) and Pt4Me (Me = Pd, Ag, Au) clusters were calculated and compared with the H-atom adsorption on monometallic clusters. The effect of alloying on the H-atom adsorption is evident for all the investigated bimetallic systems. However, it strongly depends on the second metal atom, Me, is placed in the surface layer or in the subsurface one. In general, the H atom adsorbed in a site containing the second metal exhibits different properties from those characteristic of its adsorption on Pd(100) and Pt(100). Hence, the modified interaction between atomic hydrogen and the alloyed surfaces may increase the selectivity of the catalytic hydrogenation reactions on such surfaces.
机译:使用密度泛函理论(DFT)研究了合金化对原子氢吸附的影响。在研究中,通过簇模型考虑了Pd-Ag,Pd-Pt,Pd-Au,Pt-Ag和Pt-Au合金的(100)个表面。计算了吸附在Pd4Me(Me = Ag,Pt,Au)和Pt4Me(Me = Pd,Ag,Au)簇上的H原子的结构和能量,并将其与单金属簇上的H原子吸附进行了比较。在所有研究的双金属体系中,合金化对H原子吸附的影响是显而易见的。但是,这很大程度上取决于第二金属原子Me放置在表面层或次表面金属中。通常,吸附在含有第二种金属的位点上的氢原子表现出与其在Pd(100)和Pt(100)上的吸附特性不同的特性。因此,原子氢与合金化表面之间的改进的相互作用可增加此类表面上催化氢化反应的选择性。

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