The chemical ordering in AgAu nanoalloys is determined by global optimization searches at the DFT level. A simulation code based on the Basin Hopping algorithm is developed and applied to truncated octahedral nanoalloys of 38 atoms and to icosahedral nanoalloys of 55 atoms. The optimization results show a different behaviour of these clusters for what concerns the optimal chemical ordering on the Ag-rich side. In the truncated octahedron, up to two Au atoms are accommodated in the cluster core, while in the icosahedron, all atoms are placed on the surface. When increasing Au content, string-like Au patterns form on the cluster surface. The different behaviours of the icosahedron and of the truncated octahedron are rationalized in terms of t...
The effect of systematic Ni atom addition on the chemical ordering properties of the nanoalloys has ...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
International audienceThe determination of optimal chemical ordering in nanoalloys, i.e. of the most...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
Chemical ordering in bimetallic nanocrystallites can now be efficiently determined by density-functi...
The computational prediction of thermodynamically stable metal cluster structures has developed into...
Understanding the structure and composition of nanosized gold-copper (AuCu) clusters is crucial for ...
Chemical and physical properties of binary metallic nanoparticles (nanoalloys) are to a great extent...
Chemical and physical properties of binary metallic nanoparticles (nanoalloys) are to a great extent...
Chemical ordering in magic-size Ag-Pd nanoalloys is studied by means of global optimization searches...
The energetics, structures and segregation of 98-atom AuPd nanoclusters are investigated using a gen...
We hereby present a density functional theory (DFT) study of the structural, energetic, and electron...
WOS: 000520686500001The effect of systematic Ni atom addition on the chemical ordering properties of...
The effect of systematic Ni atom addition on the chemical ordering properties of the nanoalloys has ...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
International audienceThe determination of optimal chemical ordering in nanoalloys, i.e. of the most...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
The structures of AgCu, AgNi, and AgCo nanoalloys with icosahedral geometry have been computationall...
Chemical ordering in bimetallic nanocrystallites can now be efficiently determined by density-functi...
The computational prediction of thermodynamically stable metal cluster structures has developed into...
Understanding the structure and composition of nanosized gold-copper (AuCu) clusters is crucial for ...
Chemical and physical properties of binary metallic nanoparticles (nanoalloys) are to a great extent...
Chemical and physical properties of binary metallic nanoparticles (nanoalloys) are to a great extent...
Chemical ordering in magic-size Ag-Pd nanoalloys is studied by means of global optimization searches...
The energetics, structures and segregation of 98-atom AuPd nanoclusters are investigated using a gen...
We hereby present a density functional theory (DFT) study of the structural, energetic, and electron...
WOS: 000520686500001The effect of systematic Ni atom addition on the chemical ordering properties of...
The effect of systematic Ni atom addition on the chemical ordering properties of the nanoalloys has ...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...