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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Globally Optimized Equilibrium Shapes of Zirconia-Supported Rh and Pt Nanoclusters: Insights into Site Assembly and Reactivity
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Globally Optimized Equilibrium Shapes of Zirconia-Supported Rh and Pt Nanoclusters: Insights into Site Assembly and Reactivity

机译:全局优化的氧化锆支持的RH和PT纳米能器的平衡形状:进入现场组装和反应性的见解

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摘要

Metal-support interfaces form an active site for many important catalytic reactions. The modeling of these interfacial sites calls for approximations to set up a structure model, which in turn may significantly have an impact on studied chemistry and obtained atomistic understanding. Herein, we have employed a density functional theory-based genetic approach to obtain globally optimized nanostructures for Rh and Pt clusters on a ZrO2 support. The analysis of the obtained structures shows that Rh clusters take more compact shapes, whereas Pt prefers elongated and low-symmetry structures. We find that metal-oxide perimeter sites are structurally different, presenting varying Pt and Rh coordinations and CO adsorption energies. Our analysis shows that the presence of a support always destabilizes CO adsorption at the cluster edge, but the magnitude of destabilization varies substantially from site to site. The complexity of catalyst-support interactions demonstrates that even an inert support can intricately influence the reactivity of interfacial sites.
机译:金属支持的接口,形成了许多重要的催化反应活性部位。这些界面部位的建模要求建立结构模型的近似,这反过来可能会对研究的化学和获得原子理解产生影响。在此,我们使用了一种基于密度的基于函数理论的遗传方法,以获得ZrO2载体上的Rh和Pt簇的全球优化的纳米结构。所获得的结构的分析表明,RH簇采用更紧凑的形状,而PT更喜欢细长和低对称的结构。我们发现金属氧化物周边位点在结构上不同,呈现不同的Pt和Rh协调和CO吸附能量。我们的分析表明,支撑件的存在始终稳定在群集边缘的CO吸附,但不稳定的损失程度基本上因现场而异。催化剂 - 载体相互作用的复杂性表明,即使是惰性载体也可以错综复杂地影响界面位点的反应性。

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