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模拟有序 Pt3Ti 晶体(111)表面的表面偏析现象。

Modeling surface segregation phenomena in the (111) surface of ordered Pt3Ti crystal.

机构信息

Department of Mechanical Engineering, Indiana University-Purdue University Indianapolis, Indianapolis, Indiana 46202, USA.

出版信息

J Chem Phys. 2010 Sep 21;133(11):114701. doi: 10.1063/1.3490792.

Abstract

We investigated the surface segregation phenomena in the (111) surface of ordered Pt(3)Ti crystal using density functional theory (DFT) calculation (with no configuration sampling) and Monte Carlo (MC) simulation method (employing modified embedded atom method potentials and with extensive configuration sampling). Our DFT study suggested that the off-stoichiometric effect (specifically, a Pt concentration higher than 75 at. %) accounted for the experimentally observed Pt segregation to the outermost layer of the Pt(3)Ti (111). Our MC simulations predicted that in a Pt(3)Ti (111) sample with a Pt concentration slightly above 75 at. %, Pt atoms would segregate to the surface to form a pure Pt outermost layer, while the ordered Pt(3)Ti crystal structure would be maintained in the second layer and below. Moreover, our DFT calculations revealed that the d-band center of the Pt-segregated Pt(3)Ti (111) surface would downshift by 0.21 eV as compared to that of a pure Pt (111) surface. As a result, O adsorption energy on the Pt-segregated Pt(3)Ti (111) surface was found to be at least 0.16 eV weaker than that on the pure Pt (111) surface. Thus, we theoretically modeled the geometric and electronic structures of the Pt-segregated Pt(3)Ti (111) surface and further suggested that the Pt surface segregation could lead to enhanced catalytic activity for oxygen reduction reactions on Pt(3)Ti alloy catalysts.

摘要

我们使用密度泛函理论(DFT)计算(无构型采样)和蒙特卡罗(MC)模拟方法(采用改进的嵌入原子法势和广泛的构型采样)研究了有序 Pt(3)Ti 晶体(111)表面的表面偏析现象。我们的 DFT 研究表明,非化学计量效应(具体来说,Pt 浓度高于 75 原子%)解释了实验观察到的 Pt 向 Pt(3)Ti(111)最外层的偏析。我们的 MC 模拟预测,在 Pt 浓度略高于 75 原子%的 Pt(3)Ti(111)样品中,Pt 原子会偏析到表面形成纯 Pt 最外层,而有序 Pt(3)Ti 晶体结构将在第二层及以下保持不变。此外,我们的 DFT 计算表明,与纯 Pt(111)表面相比,Pt 偏析的 Pt(3)Ti(111)表面的 d 带中心向下移动了 0.21 eV。因此,我们发现 O 在 Pt 偏析的 Pt(3)Ti(111)表面上的吸附能至少比在纯 Pt(111)表面上弱 0.16 eV。因此,我们从理论上模拟了 Pt 偏析的 Pt(3)Ti(111)表面的几何和电子结构,并进一步提出 Pt 表面偏析可能导致 Pt(3)Ti 合金催化剂上氧还原反应的催化活性增强。

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