Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1624046 | Journal of Alloys and Compounds | 2008 | 5 Pages |
Abstract
The mechanical properties are not yet understood at basic levels. Previous works shows that the greatest hardness for rock-salt structures (such as TiCxN1âx) is attained for a valence electron concentration (VEC) of 4.2 electrons per atom. The present work is aimed to explore this concept for yttrium-based compounds. By means of first principles calculations we did a systematical investigation where nitrogen in YN (VEC = 4) was supplanted by either of B, C or O to reduce or increase its VEC, forming YBxN1âx, YCxN1âx and YN1âxOx ternary compounds. We have calculated the cohesive energy (EO), cell volume (VO), bulk modulus (BO) and density of states (DoS) as a function of VEC. The Fermi level (Ef,) is shifted toward the valence band by substituting B or C in YN, and toward the conduction band by means of O. It is concluded that the optimal position for Ef (maximum BO) is linked to the saturation of electronic states with eg-symmetry. At this point the excess of electrons provided by O starts filling antibonding states with t2g-symmetry. That is, BO increases monotonically as a function of VEC until VEC â¼Â 4.1, after that point BO decrease.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
G. Soto, M.G. Moreno-Armenta, A. Reyes-Serrato,