We present a computational study on graphene nanostructures, focusing our attention on Coronene (C24H12) and Ovalene (C32H14) molecules and their Si-atoms substituted counterparts. We used density functional theory to quantify the effects of the chemical modifications. For all the modified geometries (with single silicon atoms, dimers and trimers) we record an increase of the energy stability. Concerning the structural properties, the effect caused by Si-trimers is, in some configurations, for both the molecules under study, a deformation of the original structure associated with a loss of the flatness, typical of the pure systems
Coronene (C24H12), a charge transfer complex with low-cost and high-performance energy storage, has ...
We have quantitatively investigated the relationship between the aromaticity and structural stabilit...
We carry out quantum chemistry calculations on armchair graphene nanoribbons (AGNRs) using density-f...
We present a computational study on graphene nanostructures, focusing our attention on Coronene (C24...
We report a computational comparative study of the ground and excited states properties of graphene ...
This Thesis presents and explores the attractive landscape of the reduced dimensionality systems wor...
We report studies of the correlated excited states of coronene and substituted coronene within the P...
[[abstract]]The electronic structures of graphene nanoflakes (GNFs) exposed to an organo-silane prec...
The results reported here are from the theoretical investigations of the graphene systems. In select...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
Coronene C24H12 can be considered as graphene nanoflakes. This aromatic hydrocarbon allows for detai...
We report a comparative computational investigation on the first six members of linear poly-C,Si,Ge-...
Cataloged from PDF version of article.Based on the first-principles plane wave calculations, we stud...
9 p.The delocalised nature of p-electrons in carbon-based compounds has opened a huge path for new f...
We report a comparative computational analysis on the electronic and optical properties of some embl...
Coronene (C24H12), a charge transfer complex with low-cost and high-performance energy storage, has ...
We have quantitatively investigated the relationship between the aromaticity and structural stabilit...
We carry out quantum chemistry calculations on armchair graphene nanoribbons (AGNRs) using density-f...
We present a computational study on graphene nanostructures, focusing our attention on Coronene (C24...
We report a computational comparative study of the ground and excited states properties of graphene ...
This Thesis presents and explores the attractive landscape of the reduced dimensionality systems wor...
We report studies of the correlated excited states of coronene and substituted coronene within the P...
[[abstract]]The electronic structures of graphene nanoflakes (GNFs) exposed to an organo-silane prec...
The results reported here are from the theoretical investigations of the graphene systems. In select...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
Coronene C24H12 can be considered as graphene nanoflakes. This aromatic hydrocarbon allows for detai...
We report a comparative computational investigation on the first six members of linear poly-C,Si,Ge-...
Cataloged from PDF version of article.Based on the first-principles plane wave calculations, we stud...
9 p.The delocalised nature of p-electrons in carbon-based compounds has opened a huge path for new f...
We report a comparative computational analysis on the electronic and optical properties of some embl...
Coronene (C24H12), a charge transfer complex with low-cost and high-performance energy storage, has ...
We have quantitatively investigated the relationship between the aromaticity and structural stabilit...
We carry out quantum chemistry calculations on armchair graphene nanoribbons (AGNRs) using density-f...