The electronic structure and thermodynamic properties of disordered Al
-Zn alloys are investigated in the coherent potential approximation by
the KKR-ASA method. Analysis of the electronic density of states and
the Fermi surfaces of disordered alloys reveals the presence of eight
electronic topological transitions in the concentration interval from
0 to 70 at. % Zn. It is shown that the passage of the Fermi level thro
ugh two minima of the density of states, which are due to the superpos
ition of different types of electronic topological transitions, gives
rise to singularities in the concentration dependence of the second de
rivative of the thermodynamic potential at points corresponding to the
boundaries of the region of isostructural decomposition of the high-t
emperature solid solution, according to the phase diagram of the Al-Zn
system. (C) 1997 American Institute of Physics.