Computational study of structural, electronic and optical properties of molybdenum chalcogenides

Based on rst principles calculations the structural, mechanical stability and electronic properties of molybdenum chalcogenides 2H-MoX2 (X = S, Se, Te) have been studied using density functional theory (DFT). The generalized gradient approximation (GGA) proposed by Perdew, Burke and Ernzerhof (PBE)...

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Main Author: Ondzibou, Ninon Gildas
Format: Others
Language:en
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/10539/14967
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-wits-oai-wiredspace.wits.ac.za-10539-149672019-05-11T03:41:31Z Computational study of structural, electronic and optical properties of molybdenum chalcogenides Ondzibou, Ninon Gildas Molybdenum. Chalcogenides. Molybdenum - Electric properties. Molybdenum - Optical properties. Based on rst principles calculations the structural, mechanical stability and electronic properties of molybdenum chalcogenides 2H-MoX2 (X = S, Se, Te) have been studied using density functional theory (DFT). The generalized gradient approximation (GGA) proposed by Perdew, Burke and Ernzerhof (PBE) was employed together with the projector augmented plane wave (PAW) method. The van der Waals interactions in the Grimme (DFT-D2) and Lundqvist and Langreth (vdW-DF) approximations have been added on top of PBE or revised PBE in order to take into account the weak interactions between layers of 2H-MoX2 (X = S, Se, Te). The structural properties include the equilibrium lattice parameters, the cohesive energy and the formation energy. Besides we have studied the mechanical stability of these compounds by examining the elastic constants using the PBE, vdW-DF, and DFT-D2 approximations. Other quantities related to the mechanical properties such as the Young's modulus, the Poisson's ratio and the bulk modulus were also calculated. Electronic properties of bulk 2H-MoX2 (X = S, Se, Te) have been investigated using density functional theory (via band structure and projected density of state), and a partially self-consistent GW (GW0) approximation. We have investigated electronic properties ( band structure) for monolayers 1H-MoX2 (X = S, Se, Te) using a single shot GW (G0W0) approximation. Optical properties for monolayer 1H-MoX2 (X = S, Se, Te) were studied using the Bethe-Salpeter equation (BSE). 2014-07-22T13:07:31Z 2014-07-22T13:07:31Z 2014-07-22 Thesis http://hdl.handle.net/10539/14967 en application/pdf
collection NDLTD
language en
format Others
sources NDLTD
topic Molybdenum.
Chalcogenides.
Molybdenum - Electric properties.
Molybdenum - Optical properties.
spellingShingle Molybdenum.
Chalcogenides.
Molybdenum - Electric properties.
Molybdenum - Optical properties.
Ondzibou, Ninon Gildas
Computational study of structural, electronic and optical properties of molybdenum chalcogenides
description Based on rst principles calculations the structural, mechanical stability and electronic properties of molybdenum chalcogenides 2H-MoX2 (X = S, Se, Te) have been studied using density functional theory (DFT). The generalized gradient approximation (GGA) proposed by Perdew, Burke and Ernzerhof (PBE) was employed together with the projector augmented plane wave (PAW) method. The van der Waals interactions in the Grimme (DFT-D2) and Lundqvist and Langreth (vdW-DF) approximations have been added on top of PBE or revised PBE in order to take into account the weak interactions between layers of 2H-MoX2 (X = S, Se, Te). The structural properties include the equilibrium lattice parameters, the cohesive energy and the formation energy. Besides we have studied the mechanical stability of these compounds by examining the elastic constants using the PBE, vdW-DF, and DFT-D2 approximations. Other quantities related to the mechanical properties such as the Young's modulus, the Poisson's ratio and the bulk modulus were also calculated. Electronic properties of bulk 2H-MoX2 (X = S, Se, Te) have been investigated using density functional theory (via band structure and projected density of state), and a partially self-consistent GW (GW0) approximation. We have investigated electronic properties ( band structure) for monolayers 1H-MoX2 (X = S, Se, Te) using a single shot GW (G0W0) approximation. Optical properties for monolayer 1H-MoX2 (X = S, Se, Te) were studied using the Bethe-Salpeter equation (BSE).
author Ondzibou, Ninon Gildas
author_facet Ondzibou, Ninon Gildas
author_sort Ondzibou, Ninon Gildas
title Computational study of structural, electronic and optical properties of molybdenum chalcogenides
title_short Computational study of structural, electronic and optical properties of molybdenum chalcogenides
title_full Computational study of structural, electronic and optical properties of molybdenum chalcogenides
title_fullStr Computational study of structural, electronic and optical properties of molybdenum chalcogenides
title_full_unstemmed Computational study of structural, electronic and optical properties of molybdenum chalcogenides
title_sort computational study of structural, electronic and optical properties of molybdenum chalcogenides
publishDate 2014
url http://hdl.handle.net/10539/14967
work_keys_str_mv AT ondzibouninongildas computationalstudyofstructuralelectronicandopticalpropertiesofmolybdenumchalcogenides
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