We present the optimization of a genetic algorithm (GA) that is designed to predict the most stable structural isomers of hydrogenated and hydroxylated fullerene cages. Density functional theory (DFT) and density functional tight binding (DFTB) methods are both employed to compute isomer energies. We show that DFTB and DFT levels of theory are in good agreement with each other and that therefore both sets of optimized GA parameters are very similar. As a prototypical fullerene cage, we consider the functionalization of the C<sub>20</sub> species, since for this smallest possible fullerene cage it is possible to compute all possible isomer energies for evaluation of the GA performance. An energy decomposition analysis for both C<sub>20</sub>...
Nowadays, material, energy and information technologies are three pillar industries. The materials t...
AbstractComputation is playing an increasing role in the discovery of materials, including supramole...
Materials optimization for organic solar cells (OSCs) is a highly active field, with many approaches...
The ability to accurately calculate relative energies of fullerenes is important in many areas of co...
A systematic study of the structural and electronic properties of the 17 Si38 fullerene cage isomers...
We present the results of a study on the structural and electronic properties of the Si38 fullerene ...
This thesis investigates the relative efficiencies of two isomeric search procedures to survey poten...
A computational protocol making use of double hybrid functionals in conjunction with a recently deve...
A computational protocol making use of double hybrid functionals in conjunction with a recently deve...
Hydrogenated small fullerenes (Cn, n 0.99) to full DFT-LDA calculations at a fraction of the comput...
International audienceHydrogenated small fullerenes (Cn, n 0.99) to full DFT-LDA calculations at a ...
The geometries of C-n (n = 2-30) clusters have been optimized with a genetic algorithm (GA) associat...
The present study attempts to investigate the structural, electronic, and non-linear optical propert...
Density functional theory calculations within the G03W package, with B3LYP exchange functional and a...
The present study attempts to investigate the structural, electronic, and non-linear optical propert...
Nowadays, material, energy and information technologies are three pillar industries. The materials t...
AbstractComputation is playing an increasing role in the discovery of materials, including supramole...
Materials optimization for organic solar cells (OSCs) is a highly active field, with many approaches...
The ability to accurately calculate relative energies of fullerenes is important in many areas of co...
A systematic study of the structural and electronic properties of the 17 Si38 fullerene cage isomers...
We present the results of a study on the structural and electronic properties of the Si38 fullerene ...
This thesis investigates the relative efficiencies of two isomeric search procedures to survey poten...
A computational protocol making use of double hybrid functionals in conjunction with a recently deve...
A computational protocol making use of double hybrid functionals in conjunction with a recently deve...
Hydrogenated small fullerenes (Cn, n 0.99) to full DFT-LDA calculations at a fraction of the comput...
International audienceHydrogenated small fullerenes (Cn, n 0.99) to full DFT-LDA calculations at a ...
The geometries of C-n (n = 2-30) clusters have been optimized with a genetic algorithm (GA) associat...
The present study attempts to investigate the structural, electronic, and non-linear optical propert...
Density functional theory calculations within the G03W package, with B3LYP exchange functional and a...
The present study attempts to investigate the structural, electronic, and non-linear optical propert...
Nowadays, material, energy and information technologies are three pillar industries. The materials t...
AbstractComputation is playing an increasing role in the discovery of materials, including supramole...
Materials optimization for organic solar cells (OSCs) is a highly active field, with many approaches...