In this work, we systematically studied the structure, and electronic and magnetic properties of van der Waals (vdWs) interface Graphene/MoS2 heterostructure (HS-G/MoS2) and C sites vacancy defects in HS-G/MoS2 materials using first-principles calculations. By the structural analysis, we found that nondefects geometry is more compact than defects geometries. To investigate the electronic and magnetic properties of HS-G/MoS2 and C sites vacancy defects in HS-G/MoS2 materials, we have studied band structure, density of states (DOS), and partial density of states (PDOS). By analyzing the results, we found that HS-G/MoS2 is metallic in nature but C sites vacancy defects in HS-G/MoS2 materials have a certain energy bandgap. Also, from the band s...
Based on first-principles plane-wave calculations, we studied the functionalization of the two-dimen...
In this thesis, a large number of point defects was studied in both 2D and 3D nanomaterials that are...
Heterostructures of graphite/MoS2 display a wide range of lattice registry due to rotational alignme...
Graphene (G) and hexagonal Boron Nitride (h-BN) are structurally similar materials but have very dif...
Graphene, the thinnest material with a stable 2D structure, is a potential alternative for silicon-b...
In view of important role of inducing and manipulating the magnetism in two-dimensional materials fo...
In this dissertation different van der Waals heterostructures such as graphene-MoS2 and MoTe2-MoS2 w...
The electronic structure and the optical properties of Graphene/MoS2 heterostructure (GM) are studie...
In search of exploiting cost-effective, highly stable, efficient, and greatly active electrocatalyst...
The experimental realization of two-dimensional materials such as graphene, silicene and germanene h...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
Two-dimensional (2D) materials, such as graphene and single-layer (SL) transition metal dichalcogeni...
We present results of density functional theory based calculations of the electronic structure of a ...
Imperfections in the crystal structure, such as point defects, can strongly modify the optical and t...
Based on first-principles plane-wave calculations, we studied the functionalization of the two-dimen...
In this thesis, a large number of point defects was studied in both 2D and 3D nanomaterials that are...
Heterostructures of graphite/MoS2 display a wide range of lattice registry due to rotational alignme...
Graphene (G) and hexagonal Boron Nitride (h-BN) are structurally similar materials but have very dif...
Graphene, the thinnest material with a stable 2D structure, is a potential alternative for silicon-b...
In view of important role of inducing and manipulating the magnetism in two-dimensional materials fo...
In this dissertation different van der Waals heterostructures such as graphene-MoS2 and MoTe2-MoS2 w...
The electronic structure and the optical properties of Graphene/MoS2 heterostructure (GM) are studie...
In search of exploiting cost-effective, highly stable, efficient, and greatly active electrocatalyst...
The experimental realization of two-dimensional materials such as graphene, silicene and germanene h...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
Two-dimensional (2D) materials, such as graphene and single-layer (SL) transition metal dichalcogeni...
We present results of density functional theory based calculations of the electronic structure of a ...
Imperfections in the crystal structure, such as point defects, can strongly modify the optical and t...
Based on first-principles plane-wave calculations, we studied the functionalization of the two-dimen...
In this thesis, a large number of point defects was studied in both 2D and 3D nanomaterials that are...
Heterostructures of graphite/MoS2 display a wide range of lattice registry due to rotational alignme...