The electronic structure and the optical properties of Graphene/MoS2 heterostructure (GM) are studied based on density functional theory. Compared with single-layer graphene, the bandgap will be opened; however, the bandgap will be reduced significantly when compared with single-layer MoS2. Redshifts of the absorption coefficient, refractive index, and the reflectance appear in the GM system; however, blueshift is found for the energy loss spectrum. Electronic structure and optical properties of single-layer graphene and MoS2 are changed after they are combined to form the heterostructure, which broadens the extensive developments of two-dimensional materials
We present results of density functional theory based calculations of the electronic structure of a ...
Heterostructures based on graphene were investigated by using density function theory (DFT). It is f...
In search of exploiting cost-effective, highly stable, efficient, and greatly active electrocatalyst...
Graphene/MoS2 has been widely used in optoelectronic devices due to its unique optical properties. F...
Double-layer heterostructures were studied. The energetic influence of the quasi-twodimensional mate...
© 2018 Author(s). The electronic properties of strained graphene/molybdenum disulfide (Gr/MoS2) hete...
© 2018 Author(s). The electronic properties of strained graphene/molybdenum disulfide (Gr/MoS2) hete...
Since its discovery, graphene has been the object of study for several and manifold applications, ra...
The computational and experimental data presented in this paper refer to the research article First...
We investigated the thermoelectric (TE) properties of the MoS2 monolayer-graphene heterostructure wh...
During last two decades, after the discovery of graphene , two-dimensional materials attracted a hug...
Today a well-equipped library of two-dimensional materials can be synthesized or exfoliated, ranging...
In this paper, we study the structural and electronic properties of graphene adsorbed on MoS_2 monol...
For van der Waals (vdW) heterostructures, optical and electrical properties (e.g., saturable absorpt...
In this paper, we study the structural and electronic properties of graphene adsorbed on MoS_2 monol...
We present results of density functional theory based calculations of the electronic structure of a ...
Heterostructures based on graphene were investigated by using density function theory (DFT). It is f...
In search of exploiting cost-effective, highly stable, efficient, and greatly active electrocatalyst...
Graphene/MoS2 has been widely used in optoelectronic devices due to its unique optical properties. F...
Double-layer heterostructures were studied. The energetic influence of the quasi-twodimensional mate...
© 2018 Author(s). The electronic properties of strained graphene/molybdenum disulfide (Gr/MoS2) hete...
© 2018 Author(s). The electronic properties of strained graphene/molybdenum disulfide (Gr/MoS2) hete...
Since its discovery, graphene has been the object of study for several and manifold applications, ra...
The computational and experimental data presented in this paper refer to the research article First...
We investigated the thermoelectric (TE) properties of the MoS2 monolayer-graphene heterostructure wh...
During last two decades, after the discovery of graphene , two-dimensional materials attracted a hug...
Today a well-equipped library of two-dimensional materials can be synthesized or exfoliated, ranging...
In this paper, we study the structural and electronic properties of graphene adsorbed on MoS_2 monol...
For van der Waals (vdW) heterostructures, optical and electrical properties (e.g., saturable absorpt...
In this paper, we study the structural and electronic properties of graphene adsorbed on MoS_2 monol...
We present results of density functional theory based calculations of the electronic structure of a ...
Heterostructures based on graphene were investigated by using density function theory (DFT). It is f...
In search of exploiting cost-effective, highly stable, efficient, and greatly active electrocatalyst...