Ab initio Calculations of Structural and Electronic Properties of Pt3 and Cu3 clusters adsorbed on ZnO(000 ̅1)

Y. Benkrima, A. Souigat, Y. Chaouche, Z. Korichi, Mohammed Elbar Soudani, A. Belfar
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引用次数: 1

Abstract

This search paper is focus on the investigation of the most stability structures of Pt3 and Cu3 clusters adsorbed on ZnO (000 ̅1) surfaces in the Wurtzite stable structure. The results are obtained by using the Density Function Theory (DFT). All the calculations are performed using the Gradient Generalized Approximation to describe the exchange correlation term in SIESTA code. From this work we found new structures of Pt3 and Cu3 clusters with lowest energy. Also we have calculated the binding energy, relaxation interlayer for each cluster, bond lengths, vertical ionization potential PIv and the density of states DOS. Through the results we found that the Pt3 cluster is more stable than Cu3 cluster and confirmed by the DOS, in the other hand the ZnO-O surface is more stable than ZnO-Zn surface. The computed electron structure and DOS illustrate that the Pt3/ZnO and Cu3/ZnO clusters adsorbed on ZnO-O surfaces display metallic characteristics.
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ZnO(000)上吸附Pt3和Cu3团簇结构和电子性质的从头计算
本文主要研究了纤锌矿稳定结构中吸附在ZnO(000 ~ 1)表面的Pt3和Cu3团簇最稳定的结构。利用密度泛函理论(DFT)得到了结果。所有的计算都使用梯度广义近似来描述SIESTA代码中的交换相关项。从这项工作中,我们发现了能量最低的Pt3和Cu3簇的新结构。我们还计算了每个簇的结合能、弛豫层、键长、垂直电离势PIv和态密度DOS。通过结果我们发现Pt3团簇比Cu3团簇更稳定,并得到DOS的证实,另一方面ZnO-O表面比ZnO-Zn表面更稳定。计算电子结构和DOS表明,在ZnO- o表面吸附的Pt3/ZnO和Cu3/ZnO簇具有金属特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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