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首页> 外文期刊>Journal of molecular modeling >Structure, vibrational, and optical properties of platinum cluster: a density functional theory approach
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Structure, vibrational, and optical properties of platinum cluster: a density functional theory approach

机译:铂簇的结构,振动和光学性质:密度泛函理论方法

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摘要

Using density functional theory, stability, chemical, and optical properties of small platinum clusters, Pt-n (n=2 to 10) have been investigated. An attempt has been made to establish a correlation between stability and chemical reactivity parameters. The calculated geometries are in agreement with the available experimental and theoretical results. The atom addition energy change (Delta E-1) and stability function (Delta E-2) reveal that Pt-7 is more stable than its neighboring clusters. Very good agreement of the calculated electron affinity with the available experimental results has been observed. The polarizability of the Pt-n clusters depends almost linearly on the number of atoms. A correlation between the static polarizability and ionization potential is found, paving a way to calculate polarizabilty of larger clusters from their ionization potential. The calculated vibrational frequencies are compared with available experimental and theoretical results and good agreement between them has been established. In general, the prominent peak of molar absorption coefficient is shifting toward the lower energy side when cluster size grows. Our DOS calculation suggests that d orbital is primarily responsible for HOMO position and s orbital is responsible for LUMO position.
机译:使用密度泛函理论,小型铂簇的稳定性,化学性质和光学性质,研究了Pt-n(n = 2至10)。已经尝试建立稳定性和化学反应性参数之间的相关性。计算出的几何形状与可用的实验和理论结果一致。原子加能变化(Delta E-1)和稳定性函数(Delta E-2)表明Pt-7比其相邻簇更稳定。已经观察到计算的电子亲和力与可获得的实验结果非常吻合。 Pt-n团簇的极化率几乎线性地取决于原子数。发现了静态极化率和电离势之间的相关性,为从较大团簇的电离势计算出极化率铺平了道路。将计算出的振动频率与可用的实验和理论结果进行了比较,并在它们之间建立了良好的一致性。通常,当团簇尺寸增大时,摩尔吸收系数的突出峰向低能侧移动。我们的DOS计算表明d轨道主要负责HOMO位置,而s轨道负责LUMO位置。

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