首页> 外文期刊>The European physical journal, B. Condensed matter physics >Computational investigation of CO adsorbed on Au-x, Ag-x and (AuAg)(x) nanoclusters (x=1-5, 147) and monometallic Au and Ag low-energy surfaces
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Computational investigation of CO adsorbed on Au-x, Ag-x and (AuAg)(x) nanoclusters (x=1-5, 147) and monometallic Au and Ag low-energy surfaces

机译:Au-X,Ag-X和(AuAg)(X)纳米能器(X = 1-5,147)和单金属Au和Ag低能量表面的计算研究

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Density functional theory calculations have been performed to investigate the use of CO as a probe molecule for the determination of the structure and composition of Au, Ag and AuAg nanoparticles. For very small nanoclusters (x = 1-5), the CO vibrational frequencies can be directly correlated to CO adsorption strength, whereas larger 147-atom nanoparticles show a strong energetic preference for CO adsorption at a vertex position but the highest wavenumbers are for the bridge positions. We also studied CO adsorption on Au and Ag (100) and (111) surfaces, for a 1 monolayer coverage, which proves to be energetically favourable on atop only and bridge positions for Au (100) and atop for Ag (100); vibrational frequencies of the CO molecules red-shift to lower wavenumbers as a result of increased metal coordination. We conclude that CO vibrational frequencies cannot be solely relied upon in order to obtain accurate compositional analysis, but we do propose that elemental rearrangement in the core@shell nanoclusters, from Ag@Au (or Au@ Ag) to an alloy, would result in a shift in the CO vibrational frequencies that indicate changes in the surface composition.
机译:已经进行了密度函数理论计算,以研究CO作为探针分子的使用,用于测定Au,Ag和Auag纳米粒子的结构和组成。对于非常小的纳米团簇(X = 1-5),CO振动频率可以直接相关到CO吸附强度,而较大的147-原子纳米颗粒显示出在顶点位置的CO吸附的强大能量偏好,但是最高的波数桥接位置。我们还研究了AU和AG(100)和(111)表面的CO吸附,用于1单层覆盖,这证明是在仅适用于AU(100)和AG(100)的AG(100)上的桥接位置的高处优惠;由于金属协调增加,CO分子的振动频率向下波数转移到下波兰。我们得出结论,为了获得准确的组成分析,我们不能单独依赖CO振动频率,但我们确实提出核心@ Shell纳米单元中的元素重排,从Ag @ Au(或Au @ Ag)到合金,将导致在CO振动频率的偏移,表示表面组合物的​​变化。

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