Non-equilibrium vacancy formation energies in metastable alloys — A case study of Ti0.5Al0.5N

2017 ◽  
Vol 114 ◽  
pp. 484-493 ◽  
Author(s):  
Ferenc Tasnádi ◽  
Andrey V. Lugovskoy ◽  
Magnus Odén ◽  
Igor A. Abrikosov
Materials ◽  
2019 ◽  
Vol 12 (9) ◽  
pp. 1430 ◽  
Author(s):  
Ivana Miháliková ◽  
Martin Friák ◽  
Nikola Koutná ◽  
David Holec ◽  
Mojmír Šob

We have performed quantum-mechanical calculations to examine the impact of disorder on thermodynamic, structural and electronic (magnetic) properties of Fe-Al systems with vacancies. A series of supercells was used and their properties were computed employing density-functional theory (DFT) as implemented in the VASP package. Our case study is primarily aimed at a disordered solid solution Fe 81.25 Al 18.75 but we have compared our results also with those obtained for the ordered Fe 3 Al intermetallic compound for which experimental data exist in literature. Both phases are found in Fe-Al-based superalloys. The Fe-18.75at.%Al solid solution was simulated using special quasirandom structures (SQS) in three different disordered states with a different distribution of Al atoms. In particular, we have considered a general disordered case (an A2-like variant), the case without the first nearest neighbor Al-Al pairs (a B2-like distribution of atoms) and also the case without both the first and second nearest neighbor Al-Al pairs (the D0 3 -like variant, in fact, an Fe-rich Fe 3 Al phase). The vacancy formation energies as well as the volumes of (fully relaxed) supercells with vacancies showed a large scatter for the disordered systems. The vacancy formation energies decrease with increasing concentration of Al atoms in the first coordination shell around the vacancy (an anti-correlation) for all disordered cases studied. The computed volumes of vacancies were found significantly lower (by 25–60%) when compared with the equilibrium volume of the missing atoms in their elemental states. Lastly, we have analyzed interactions between the vacancies and the Fe atoms and evaluated vacancy-induced changes in local magnetic moments of Fe atoms.


2018 ◽  
Vol 2 (6) ◽  
Author(s):  
Lipeng Zhang ◽  
Isaac Bredeson ◽  
Axiel Y. Birenbaum ◽  
P. R. C. Kent ◽  
Valentino R. Cooper ◽  
...  

2014 ◽  
Vol 16 (5) ◽  
pp. 055016 ◽  
Author(s):  
Maria Daniil ◽  
Keith E Knipling ◽  
Helen M Fonda ◽  
Matthew A Willard

2006 ◽  
Vol 17 (06) ◽  
pp. 795-803 ◽  
Author(s):  
HATICE KÖKTEN ◽  
ŞAKIR ERKOÇ

The surface structure, surface energy, and surface vacancy formation energy for B and N vacancy of the cubic boron nitride (c-BN)(110) surface have been investigated by performing Hartree-Fock and DFT calculations. Results are compared with available literature values. The vacancy formation energies [unrelaxed [Formula: see text] and relaxed (Ef)] are reported for the first time for c-BN(110).


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