English

Alloy Stabilized Wurtzite Ground State Structures of Zinc-Blende Semiconducting Compounds

Materials Science 2009-09-30 v1

Abstract

The ground state structures of the Ax_xB1x_{1-x}C wurtzite (WZ) alloys with x=x=0.25, 0.5, and 0.75 are revealed by a ground state search using the valence-force field model and density-functional theory total energy calculations. It is shown that the ground state WZ alloy always has a lower strain energy and formation enthalpy than the corresponding zinc-blende (ZB) alloy. Therefore, we propose that the WZ phase can be stabilized through alloying. This novel idea is supported by the fact that the WZ AlP0.5_{0.5}Sb0.5_{0.5}, AlP0.75_{0.75}Sb0.25_{0.25}, ZnS0.5_{0.5}Te0.5_{0.5}, and ZnS0.75_{0.75}Te0.25_{0.25} alloys in the lowest energy structures are more stable than the corresponding ZB alloys. To our best knowledge, this is the first example where the alloy adopts a structure distinct from both parent phases.

Keywords

Cite

@article{arxiv.0903.1449,
  title  = {Alloy Stabilized Wurtzite Ground State Structures of Zinc-Blende Semiconducting Compounds},
  author = {H. J. Xiang and Su-Huai Wei and Shiyou Chen and X. G. Gong},
  journal= {arXiv preprint arXiv:0903.1449},
  year   = {2009}
}