The surface structure of crystal grains determines the catalytic efficiency of metal particles. In this paper, we apply our recently established condensation potential model to predict the surface structure of Pt and Ni nanoparticles, which are used in fuel cells, showing the model works well but the Wulff construction fails. Based on first-principle calculations via this model, the surfaces of various shapes of Pt/Ni nanoparticles are mainly composed of fcc (111) faces (about 80%/60% of the total area). The results are consistent with existing experimental observations. Because of the simplicity of calculations, the model may be widely used to predict the surface structure of common nanoparticles
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
Background: The majority of complex and advanced materials contain nanoparticles. The properties of ...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Monte...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modi...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
This review addresses the issue of surface segregation in bimetallic alloy nanoparticles, which are...
Nanoparticles of iron and nickel are promising candidates as nanosized soft magnetic materials and a...
We have carried out density-functional-theory-based calculations of the size-dependent formation ene...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded at...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded ato...
We have carried out density-functional-theory-based calculations of the size-dependent formation ene...
Platinum is a widely used catalyst in aqueous and electrochemical environments. The size and shape o...
A first-principles model of the electrochemical double layer is applied to study surface energies an...
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
Background: The majority of complex and advanced materials contain nanoparticles. The properties of ...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Monte...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modi...
We have investigated the segregation of Pt atoms in the surfaces of Pt-Ni nanoparticles, using Modif...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
Nanoparticles of Pt/Ni alloys represent state of the art electrocatalysts for fuel cell reactions. D...
This review addresses the issue of surface segregation in bimetallic alloy nanoparticles, which are...
Nanoparticles of iron and nickel are promising candidates as nanosized soft magnetic materials and a...
We have carried out density-functional-theory-based calculations of the size-dependent formation ene...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded at...
We have developed interatomic potentials for Pt-Ni and Pt-Re alloys within the modified embedded ato...
We have carried out density-functional-theory-based calculations of the size-dependent formation ene...
Platinum is a widely used catalyst in aqueous and electrochemical environments. The size and shape o...
A first-principles model of the electrochemical double layer is applied to study surface energies an...
Metal nanoparticles (NPs) are ubiquitous in many fields, from nanotechnology to heterogeneous cataly...
Background: The majority of complex and advanced materials contain nanoparticles. The properties of ...
The surface structures of cubo-octahedral Pt-Mo nanoparticles have been investigated using the Monte...