Abstract
The electronic structures, surface energies and thermodynamic properties of different terminated Nb2Al (100) surfaces were studied using first-principle calculations based on density functional theory. Results show that the calculated electronic structures present the enhanced metallic character and decrease covalent character for all terminated surfaces, which are attributed to the surface relaxations and the formation of surface states. According the calculated surface energies of different terminations, the surface stabilities of non-stoichiometric surfaces were analyzed. The C terminated surface (Nb22Al12) is the most thermodynamically stable surface under both Nb-rich and Al-rich conditions. Moreover, the work function of Nb2Al (100) surface was calculated, indicating that its ability to gain and lose electrons on the surface is similar to that of pure elemental surface before formation.
Translated title of the contribution | Nb2Al (100)表面的电子结构和相对稳定性 |
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Original language | English |
Pages (from-to) | 1596-1601 |
Number of pages | 6 |
Journal | Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering |
Volume | 50 |
Issue number | 5 |
State | Published - May 2021 |
Keywords
- Density functional theory
- Electronic structure
- Intermetallic
- Surface properties