Title of article :
Atom ordering in cuboctahedral Ni–Al nanoalloys
Author/Authors :
Nicholas T. Wilson، نويسنده , , Mark S. Bailey، نويسنده , , Roy L. Johnston، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
10
From page :
3649
To page :
3658
Abstract :
Energy calculations have been carried out on high-symmetry cuboctahedral Ni–Al nanoalloy clusters, of varying composition, with the interatomic interactions modelled by the Gupta many-body potential. Relaxations of cuboctahedral fragments cut from the bulk lattice of Ni3Al, with 13–561 atoms, were undertaken, as were relaxations of high symmetry clusters with 55 and 147 atoms. The lowest energy isomers were found to be dominated by three factors: the tendency toward mixing due to the favourable energy of mixing, ΔmixE; the size difference between nickel and aluminium; and the higher cohesive and surface energy of nickel compared to aluminium. The latter two factors favour Al-segregation to the surface. The most stable Ni:Al composition approaches 3:1 for larger clusters.
Keywords :
Gupta potential , Nanoalloys , Nanoparticles , Nickel–aluminium alloys , simulation , Segregation , Atom ordering , Clusters , Geometric shells
Journal title :
INORGANICA CHIMICA ACTA
Serial Year :
2006
Journal title :
INORGANICA CHIMICA ACTA
Record number :
1324165
Link To Document :
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