Arrays of closely packed nanocrystals show interesting properties that can be exploited to induce new features in nanostructured optoelectronic devices. In this work we study, by first principles calculations, effects induced on near band-edge states and on carrier multiplication by nanocrystals interplay. By considering both hydrogenated and oxygenated structures, we prove that interaction between silicon nanocrystals can alter both the energy gap of the system and dynamics of excited states with a relevance that depends on the nanocrystal-nanocrystal separation, on nanocrystals orientation and on nanocrystals surface properties
In this work we investigate, by first-principles calculations, the structural, electronic and optica...
We report on a theoretical study of the electronic structure of silicon nanocrystals with a shape of...
The structural, optical and electronic properties of silicon nanocrystals are investigated as a func...
Arrays of closely packed nanocrystals show interesting properties that can be exploited to induce ne...
In this paper we report on a first-principle calculation of the electronic and structural properties...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
We present density functional theory calculations of carrier multiplication properties in a system o...
The electronic and optical properties of silicon nanocrystals passivated with hydrogen and oxygen ha...
The electronic and optical properties of hydrogenated silicon nanocrystals (H-Sinc) have been invest...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
In this work we investigate, by first-principles calculations, the structural, electronic and optica...
We report on a theoretical study of the electronic structure of silicon nanocrystals with a shape of...
The structural, optical and electronic properties of silicon nanocrystals are investigated as a func...
Arrays of closely packed nanocrystals show interesting properties that can be exploited to induce ne...
In this paper we report on a first-principle calculation of the electronic and structural properties...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
We present density functional theory calculations of carrier multiplication properties in a system o...
The electronic and optical properties of silicon nanocrystals passivated with hydrogen and oxygen ha...
The electronic and optical properties of hydrogenated silicon nanocrystals (H-Sinc) have been invest...
Total energy calculations within the Density Functional Theory have been carried out in order to inv...
In this work we investigate, by first-principles calculations, the structural, electronic and optica...
We report on a theoretical study of the electronic structure of silicon nanocrystals with a shape of...
The structural, optical and electronic properties of silicon nanocrystals are investigated as a func...