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Sulfur Dioxide and Hydrogen Adsorption on Pt{sub}3Co(111) Surfaces: A First Principles Study

机译:在Pt {sub} 3co(111)表面上的二氧化硫和氢吸附:第一个原理研究

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Interactions between sulfur dioxide, SO{sub}2, and hydrogen on two different surfaces of Pt{sub}3Co(111) were investigated using density functional theory. The two surfaces considered were a Pt-skin and Ll{sub}2 Pt{sub}3Co(111) surface. SO{sub}2 adsorption was found to be more favorable on the Ll{sub}2 surface owing to its d-band center being closer to the Fermi energy. However, both surfaces adsorbed SO{sub}2 more weakly in comparison to Pt(111). The adsorption energies of H follow the same adsorption energy trends as SO{sub}2 on the different surfaces and show a preference for the three fold-hollow sites similar to other fcc metal (111) surfaces. The weaker adsorption of SO{sub}2 on the alloy Pt{sub}3Co(111) surfaces agree well with experimental observations that removal of sulfur to attain the initial mass of activity of the catalysts prior to sulfur adsorption requires less cleaning cycles for the alloy. Additionally, our results indicate that less hydrogen adsorbs to alloy surfaces than to pure Pt(111), also in agreement with experiment. SO{sub}2 adsorption trends across the three surfaces closely mirror those of atomic sulfur, indicating that surface sulfur tolerance does not depend on the specific oxidation species.
机译:使用密度泛函理论研究了二氧化硫二氧化硫,所以{sub} 2和Pt {} 3Co(111)的两个不同表面上的氢气。考虑的两个表面是pt-skin和L1 {sub} 2 pt {sub} 3co(111)表面。因此,由于其D波段中心更接近Fermi能量,因此发现{Sub} 2吸附在LL {Sub} 2表面上更有利。然而,与Pt(111)相比,两个表面都吸附了如此{sub} 2。 H的吸附能量在不同表面上遵循相同的吸附能量趋势,并显示出与其他FCC金属(111)表面类似的三个折叠空心部位的偏好。在合金Pt {sub} 3co(111)表面上的所以{sub} 2的吸附较弱,与实验观察结果吻合,即在硫吸附之前去除硫以获得催化剂的初始活性的初始活性需要较少的清洁循环合金。此外,我们的结果表明,与实验相一致的纯PT(111)较少氢吸附到合金表面。所以{Sub} 2穿过三个表面的吸附趋势紧密地镜像原子硫的镜面,表明表面硫耐受性不依赖于特定的氧化物质。

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