Order–disorder transition of Pd0.5Ag0.5 alloys
: R.-R. Uusitalo, A. Lahti, H. Levämäki, M. P. J. Punkkinen, I. Vilja, K. Kokko, L. Vitos
Publisher: Taylor & Francis
: Milton Park, Abingdon-on-Thames, Oxfordshire United Kingdom
: 2016
: Philosophical Magazine
: Philos. Mag.
: 96
: 36
: 3697
: 3710
: 14
: 1478-6435
: 1478-6443
DOI: https://doi.org/10.1080/14786435.2016.1237055
: http://www.tandfonline.com/doi/full/10.1080/14786435.2016.1237055
Ab initio total-energy calculations, based on the exact muffin-tin orbitals method, are used to determine the equilibrium chemical configuration of Pd0.5Ag0.5 alloy as a function of disorder and temperature. The transition from a substitutionally disordered face-centred-cubic crystallographic phase to an ordered L11 phase is monitored using the coherent potential approximation which allows us to continuously scan the order parameter and thermodynamics of the alloy. We find signs of a first-order phase transition from a substitutionally disordered state to a partially ordered state around 210 K temperature and the completely ordered L11 state is predicted around 90 K.