Density Functional Study of Electronic and Structural Properties of Gold-Cadmium Selenide/Telluride Nanoclusters

Author:

Bulbula Shimeles T.12,Zeweldi Hagos W.3

Affiliation:

1. School of Material Science and Engineering, Wuhan University of Technology, No. 205 Luoshi Road, Wuhan, Hubei 430070, China

2. Department of Physics, Woldia University, Woldia, Ethiopia

3. Department of Physics, Mekelle University, Mekelle, Ethiopia

Abstract

Semiconductor nanowires are one class of building blocks that show promise for application in nanoscale electronics. Metal-semiconductor nanowire helps to improve the electrical properties or create unique ones. Electronic and structural properties of cadmium selenide/telluride connected to gold electrode clusters have been the focus of this research due to their importance in constructing fast microelectric devices. The simulations were carried out by using VASP (ViennaAb-InitioSimulation Package) which utilizes the method of density functional theory (DFT) and plane wave basis set. Optimization was performed to obtain the minimum energy structure. In this research paper the result shows that the HOMO-LUMO gaps for the minimum energy cadmium selenide/telluride connected to gold electrodes decrease as cluster size increases, whereas the binding energy shows a reverse relationship with the cluster size. However, a few clusters show special properties like AuCd2Se3and AuCd2Te3clusters.

Funder

Ethiopian Ministry of Education

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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