Electronic structures of the free-standing core shell (Cu@Ag) AgnCu34-n (n = 0-34) nanoalloy family are studied as a function of stoichiometry using ab initio total energy electronic structure calculations. Our calculations show that progressive alloying significantly alters the coordination distribution, bond lengths, formation energies, and the electronic densities of states. Changes in coordination and elemental environment are reflected in the electronic densities of states, which broaden or narrow as a result of hybridization between the Cu and the Ag atoms. The densities of states of Ag atoms in Ag-rich nanoparticles show large broadening when a single Cu atom is introduced, followed by substantial deviation of the position of the cen...
International audienceThe bimetallic M(20) and M(21) compounds, {[Cu(3)Ag(17){S(2)P(O(i)Pr)(2)}(12)]...
Producción CientíficaNickel and silver are metals with interesting properties of technological relev...
By coupling a cluster expansion with density functional theory (DFT) calculations, we determine the ...
Electronic structures of the free-standing core–shell (Cu@Ag) Ag<sub><i>n</i></sub>Cu<sub>34–<i>n</i...
Electronic structures of the free-standing core-shell (Cu@Ag) Ag nCu 34-n (n = 0-34) nanoalloy famil...
Ab initio calculations of the structure and electronic density of states (DOS) of the perfect core-s...
Ab initio calculations of the structure and electronic density of states (DOS) of the perfect core-s...
We hereby present a density functional theory (DFT) study of the structural, energetic, and electron...
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...
Accurate prediction of local properties of transition-metal nanoalloys from the electronic structure...
We present a systematic study of the structures and the electronic and magnetic properties of 13-ato...
We report results of a systematic study of structural, vibrational and thermodynamical properties of...
We report results of a systematic study of structural, vibrational and thermodynamical properties of...
Molecular dynamics simulations are performed to investigate the changes of packing structures, and t...
International audienceThe bimetallic M(20) and M(21) compounds, {[Cu(3)Ag(17){S(2)P(O(i)Pr)(2)}(12)]...
Producción CientíficaNickel and silver are metals with interesting properties of technological relev...
By coupling a cluster expansion with density functional theory (DFT) calculations, we determine the ...
Electronic structures of the free-standing core–shell (Cu@Ag) Ag<sub><i>n</i></sub>Cu<sub>34–<i>n</i...
Electronic structures of the free-standing core-shell (Cu@Ag) Ag nCu 34-n (n = 0-34) nanoalloy famil...
Ab initio calculations of the structure and electronic density of states (DOS) of the perfect core-s...
Ab initio calculations of the structure and electronic density of states (DOS) of the perfect core-s...
We hereby present a density functional theory (DFT) study of the structural, energetic, and electron...
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...
Accurate prediction of local properties of transition-metal nanoalloys from the electronic structure...
We present a systematic study of the structures and the electronic and magnetic properties of 13-ato...
We report results of a systematic study of structural, vibrational and thermodynamical properties of...
We report results of a systematic study of structural, vibrational and thermodynamical properties of...
Molecular dynamics simulations are performed to investigate the changes of packing structures, and t...
International audienceThe bimetallic M(20) and M(21) compounds, {[Cu(3)Ag(17){S(2)P(O(i)Pr)(2)}(12)]...
Producción CientíficaNickel and silver are metals with interesting properties of technological relev...
By coupling a cluster expansion with density functional theory (DFT) calculations, we determine the ...