Energetics of transition-metal alloy formation: Ti, Zr, and Hf alloyed with the heavier 4dand 5delements
- 15 May 1989
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 39 (15) , 10761-10769
- https://doi.org/10.1103/physrevb.39.10761
Abstract
Total-energy calculations yielding heats of formation for ordered compounds of Ti, Zr, and Hf alloyed with Tc, Re, Ru, Os, Rh, Ir, Pd, and Pt are presented. There exist both experimentally based phase diagrams and a substantial number of experimental heats of formation for these systems, and the present results are in accord with these; e.g., the co-occurrence of compounds at differing compositions is correctly predicted. The heats, as a function of the fractional alloy composition x, generally differ markedly from the x(1-x) dependence so often envoked. An explanation of the heat behavior for the Ti-, Zr-, and Hf-depleted alloys is found in their densities of states and is associated with the d bands of the other alloy constituent being decoupled from the Fermi level.Keywords
This publication has 11 references indexed in Scilit:
- The energetics of transition metal alloy formation: Theory versus experimentScripta Metallurgica, 1988
- Linear augmented Slater-type orbital study of Pt–5d-transition-metal alloyingPhysical Review B, 1987
- Linear augmented Slater-type-orbital study of Au–5d-transition-metal alloyingPhysical Review B, 1987
- Linear augmented-Slater-type-orbital method for electronic-structure calculations. IV.5d-5dalloysPhysical Review B, 1986
- Final-state screening of core holes in metalsPhysical Review B, 1986
- Trends in cohesive energy of transition metal alloysCalphad, 1985
- Different ways to find the thermodynamic functions describing the formation of binary alloysCalphad, 1985
- Linear augmented-Slater-type-orbital method for electronic-structure calculationsPhysical Review B, 1984
- Volume effects in transition metal alloyingActa Metallurgica, 1982
- Electronic charge density of V3SiSolid State Communications, 1981