English

High-pressure Mg-Sc-H phase diagram and its superconductivity from first-principles calculations

Superconductivity 2022-01-28 v1 Materials Science

Abstract

In this work, global search for crystal structures of ternary Mg-Sc-H hydrides (Mgx_xScy_yHz_z) under high pressure (100P200100 \le P \le 200 GPa) were performed using the evolutionary algorithm and first-principles calculations. Based on them, we computed the thermodynamic convex hull and pressure-dependent phase diagram of Mgx_xScy_yHz_z for z/(x+y)<4z/(x+y) < 4. We have identified the stable crystal structures of four thermodynamically stable compounds with the higher hydrogen content, i.e., R3ˉmR\bar{3}m-MgScH6_{6}, C2/mC2/m-Mg2_{2}ScH10_{10}, ImmmImmm-MgSc2_{2}H9_{9} and Pm3ˉmPm\bar{3}m-Mg(ScH4_{4})3_{3}. Their superconducting transition temperatures were computationally predicted by the McMillan-Allen-Dynes formula combined with first-principles phonon calculations. They were found to exhibit superconductivity; among them, R3ˉmR\bar{3}m-MgScH6_{6} was predicted to have the highest TcT_{c} (i.e. 23.34 K) at 200 GPa.

Keywords

Cite

@article{arxiv.2109.07051,
  title  = {High-pressure Mg-Sc-H phase diagram and its superconductivity from first-principles calculations},
  author = {Peng Song and Zhufeng Hou and Pedro Baptista de Castro and Kousuke Nakano and Kenta Hongo and Yoshihiko Takano and Ryo Maezono},
  journal= {arXiv preprint arXiv:2109.07051},
  year   = {2022}
}

Comments

7 pages, 5 figures, 1 Supplemental Material