首页> 外文会议>第四届国际分子模拟与信息技术应用学术会议(The 4th International Conference of Molecular Simulations and Applied Informatics Technologies)论文集 >Structure and electronic properties of Pdrt clusters and their interactions with single Satom studied by density-functional theory
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Structure and electronic properties of Pdrt clusters and their interactions with single Satom studied by density-functional theory

机译:密度泛函理论研究Pdrt团簇的结构和电子性质及其与单个原子的相互作用

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The geometries, stabilities and electronic properties of Pdn and Pdn-1S (n=2-10) clusters have been systematically investigated by making use of density-functional theory (DFT) and all-electron spin-polarized generalized gradient approximation (GGA). The optimized geometries of the Pdn and Pdn-1S clusters have been considered, and the growth patterns of the Pdn-1S clusters have been discussed with respect to S-capped or S-substituted Pdn clusters. On the basis of the optimized geometries, various energetic properties including the average binding energies, the gaps between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO), the fragmentation energies, and the second-order difference of energies (△2E) have been calculated for the most stable isomers of Pdn and Pdn-1S clusters. The investigation on the atomic average binding energies, fragmentation energies, and second-order difference of energies shows that the Pdn-1S (n=4, 6, 8) clusters have high stability. Moreover, narrowing of the HOMO-LUMO gaps is usually found for the Pdn-1S clusters (except for the two with n=3 and 9) as compared with the Pdn clusters, indicating that S atom doping leads to increase in the chemical activity of the Pdn clusters, which could be attributed to the transfer of charge from Pd atoms to S atom as evidenced by Mulliken charge population analysis.
机译:通过利用密度泛函理论(DFT)和全电子自旋极化广义梯度近似(GGA),系统地研究了Pdn和Pdn-1S(n = 2-10)团簇的几何形状,稳定性和电子性质。已经考虑了Pdn和Pdn-1S簇的最佳几何形状,并且已针对S封端或S取代的Pdn簇讨论了Pdn-1S簇的生长方式。在优化的几何结构的基础上,各种能量特性包括平均结合能,最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)之间的间隙,断裂能以及能量的二阶差已计算出Pdn和Pdn-1S团簇的最稳定异构体的(△2E)。对原子平均结合能,碎片能和能量的二阶差的研究表明,Pdn-1S(n = 4、6、8)团簇具有很高的稳定性。此外,与Pdn团簇相比,通常发现Pdn-1S团簇(除了两个n = 3和9的团簇)的HOMO-LUMO间隙变窄,这表明S原子掺杂导致Pdn-1S团簇的化学活性增加。 Pdn团簇,这可以归因于Mulliken电荷总体分析证明,电荷从Pd原子转移到S原子。

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