The search for new optical materials capable of absorbing light in the frequency range from visible to near infrared is of great importance for applications in optoelectronic devices. In this paper, we report a theoretical study of the electronic and optical properties of hybrid structures composed of fullerenes adsorbed on graphene and on graphene nanoribbons. The calculations are performed in the framework of the density functional theory including the van der Waals dispersive interactions. We found that the adsorption of the C 60 fullerenes on a graphene layer does not modify its low energy states, but it has strong consequences for its optical spectrum, introducing new absorption peaks in the visible energy region. The optical a...
We investigate the optical properties of edge-fiinctionalized graphene nanosystems, focusing on the ...
We present a systematic density functional theory study of the electronic properties, optical spectr...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
The search for new optical materials capable of absorbing light in the frequency range from visible ...
Recently, atomically well-defined cove-shaped graphene nanoribbons have been obtained using bottom-u...
Fullerene derivatives offer great scope for modification of the basic molecule, often called a bucky...
We propose a graphene/planar waveguide hybrid structure, and demonstrate total absorption in the vis...
A density functional theory (DFT) study on the geometric and electronic structure of C60 and Sc3N@C8...
We present calculations of the optical absorption and electroabsorption spectra of graphene nanoribb...
For the first time, we estimated perspectives for using a new 2D carbon nanotube (CNT)–graphene hybr...
In recent years, a plethora of material systems have been designed and prepared to increase the perf...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
In this work, we present a theoretical study at the density functional theory (DFT) level and time-d...
A density functional theory (DFT) study on the geometric and electronic structure of C60 and Sc3N@C8...
The isolation of various two-dimensional (2D) materials, and the possibility to combine them in vert...
We investigate the optical properties of edge-fiinctionalized graphene nanosystems, focusing on the ...
We present a systematic density functional theory study of the electronic properties, optical spectr...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...
The search for new optical materials capable of absorbing light in the frequency range from visible ...
Recently, atomically well-defined cove-shaped graphene nanoribbons have been obtained using bottom-u...
Fullerene derivatives offer great scope for modification of the basic molecule, often called a bucky...
We propose a graphene/planar waveguide hybrid structure, and demonstrate total absorption in the vis...
A density functional theory (DFT) study on the geometric and electronic structure of C60 and Sc3N@C8...
We present calculations of the optical absorption and electroabsorption spectra of graphene nanoribb...
For the first time, we estimated perspectives for using a new 2D carbon nanotube (CNT)–graphene hybr...
In recent years, a plethora of material systems have been designed and prepared to increase the perf...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
In this work, we present a theoretical study at the density functional theory (DFT) level and time-d...
A density functional theory (DFT) study on the geometric and electronic structure of C60 and Sc3N@C8...
The isolation of various two-dimensional (2D) materials, and the possibility to combine them in vert...
We investigate the optical properties of edge-fiinctionalized graphene nanosystems, focusing on the ...
We present a systematic density functional theory study of the electronic properties, optical spectr...
The adsorption of benzene and C60 on graphene and boron nitride is studied using density functional ...