The prominent (SiO2)8O2H3? mass peak resulting from the laser ablation of hydroxylated silica, attributed to magic cluster formation, is investigated employing global optimization with a dedicated interatomic potential and density functional calculations. The low-energy spectra of cluster isomers are calculated for the closed shell clusters: (SiO2)8OH? and (SiO2)8O2H3? giving the likely global minima in each case. Based upon our calculated cluster structures and energetics, and further on the known experimental details, it is proposed that the abundant formation of (SiO2)8O2H3? clusters is largely dependent on the high stability of the (SiO2)8OH? ground state cluster. Both the (SiO2)8O2H3? and (SiO2)8OH? ground state clusters are found to e...
We present a detailed global optimization study of cluster geometries with silica nano-clusters (SiO...
We assess the feasibility of efficiently calculating accurate thermodynamic properties of (SiO2)n·(H...
In order to explore novel high-energy and green oxidants, oxygen-rich clusters O4−/0 and O6−/0 were ...
The prominent (SiO2)8O2H3? mass peak resulting from the laser ablation of hydroxylated silica, attri...
The prominent (Si O2) 8 O2 H3- mass peak resulting from the laser ablation of hydroxylated silica, a...
The prominent (Si O2) 8 O2 H3- mass peak resulting from the laser ablation of hydroxylated silica, a...
Employing global optimisation and ab initio calculations, we follow the step-wise molecular hydroxyl...
Employing global optimisation and ab initio calculations, we follow the step-wise molecular hydroxyl...
The low energy isomer spectrum of hydroxylated silica clusters, (SiO2)M(H2O)N, is investigated using...
The low energy isomer spectrum of hydroxylated silica clusters, (SiO2)M(H2O)N, is investigated using...
Employing a polyatomic version of the basin hopping global optimization algorithm, together with int...
Employing a polyatomic version of the basin hopping global optimization algorithm, together with int...
International audienceWe report on a global optimisation study of hydroxylated silica nanoclusters (...
We report on a global optimisation study of hydroxylated silica nanoclusters (SiO2)/w(H2O)(N) with s...
We present a detailed global optimization study of cluster geometries with silica nano-clusters (SiO...
We present a detailed global optimization study of cluster geometries with silica nano-clusters (SiO...
We assess the feasibility of efficiently calculating accurate thermodynamic properties of (SiO2)n·(H...
In order to explore novel high-energy and green oxidants, oxygen-rich clusters O4−/0 and O6−/0 were ...
The prominent (SiO2)8O2H3? mass peak resulting from the laser ablation of hydroxylated silica, attri...
The prominent (Si O2) 8 O2 H3- mass peak resulting from the laser ablation of hydroxylated silica, a...
The prominent (Si O2) 8 O2 H3- mass peak resulting from the laser ablation of hydroxylated silica, a...
Employing global optimisation and ab initio calculations, we follow the step-wise molecular hydroxyl...
Employing global optimisation and ab initio calculations, we follow the step-wise molecular hydroxyl...
The low energy isomer spectrum of hydroxylated silica clusters, (SiO2)M(H2O)N, is investigated using...
The low energy isomer spectrum of hydroxylated silica clusters, (SiO2)M(H2O)N, is investigated using...
Employing a polyatomic version of the basin hopping global optimization algorithm, together with int...
Employing a polyatomic version of the basin hopping global optimization algorithm, together with int...
International audienceWe report on a global optimisation study of hydroxylated silica nanoclusters (...
We report on a global optimisation study of hydroxylated silica nanoclusters (SiO2)/w(H2O)(N) with s...
We present a detailed global optimization study of cluster geometries with silica nano-clusters (SiO...
We present a detailed global optimization study of cluster geometries with silica nano-clusters (SiO...
We assess the feasibility of efficiently calculating accurate thermodynamic properties of (SiO2)n·(H...
In order to explore novel high-energy and green oxidants, oxygen-rich clusters O4−/0 and O6−/0 were ...