International audienceThe determination of optimal chemical ordering in nanoalloys, i.e. of the most stable pattern in which atoms are arranged in bi- or multicomponent metallic clusters, is quite complex due to the enormous number of different possible configurations. This problem is very difficult to tackle by first-principle methods except for very small systems. On the other hand, the treatment at the atomistic potential level is complicated in many cases (such as AgAu) by charge transfer effects between atoms of different species in different coordination environments. Here an empirical atomistic model is developed to take into account such effects. The model is used to determine the optimal chemical ordering in AgAu nanoalloys. Charge...
Chemical ordering in bimetallic nanocrystallites can now be efficiently determined by density-functi...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Metallic alloy clusters at equilibrium display an inhomogeneous stress field which may contribute to...
The chemical ordering in AgAu nanoalloys is determined by global optimization searches at the DFT le...
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 bimetallic nanocrystallites can now be efficiently determined by density-functi...
The computational prediction of thermodynamically stable metal cluster structures has developed into...
The effect of systematic Ni atom addition on the chemical ordering properties of the nanoalloys has ...
WOS: 000520686500001The effect of systematic Ni atom addition on the chemical ordering properties of...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Structure and chemical ordering are two fundamental pre-requisites to exploit the many and fascinati...
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...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Metallic alloy clusters at equilibrium display an inhomogeneous stress field which may contribute to...
The chemical ordering in AgAu nanoalloys is determined by global optimization searches at the DFT le...
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 bimetallic nanocrystallites can now be efficiently determined by density-functi...
The computational prediction of thermodynamically stable metal cluster structures has developed into...
The effect of systematic Ni atom addition on the chemical ordering properties of the nanoalloys has ...
WOS: 000520686500001The effect of systematic Ni atom addition on the chemical ordering properties of...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Structure and chemical ordering are two fundamental pre-requisites to exploit the many and fascinati...
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...
Bimetallic nanoparticles are highly relevant for applications in, e.g., catalysis, sensing, and ener...
Metallic alloy clusters at equilibrium display an inhomogeneous stress field which may contribute to...