Mn. Asta et al., Ab initio molecular-dynamics study of highly nonideal structural and thermodynamic properties of liquid Ni-Al alloys - art. no. 020201, PHYS REV B, 6402(2), 2001, pp. 0201
Atomic and electronic structure, and diffusion coefficients in liquid Ni-Al
alloys, have been calculated by ab initio molecular-dynamics simulations.
The chemically short-range ordered structure of liquid Ni20Al80 measured by
neutron scattering is well reproduced in these simulations. We calculate a
significant electronic contribution (DeltaS(el)= - 0.4 k(B)/atom) to the f
ormation entropy of NiAl at 1900 K, originating from a simultaneous narrowi
ng and shifting of the Ni d band to higher binding energies accompanying al
loying with Al. This value of DeltaS(el), combined with an estimate for the
configurational entropy based on calculated radial distribution functions
and a nonadditive hard-sphere model, accounts for the large negative excess
entropy of mixing measured in liquid Ni-Al alloys.