English

Crystal structures and high-temperature superconductivity in molybdenum-hydrogen binary system under high pressure

Superconductivity 2024-01-31 v1

Abstract

Motivated by advances in hydrogen-rich superconductors in the past decades, we conducted variable-composition structural searches in Mo-H binary system at high pressure. A new composition-pressure phase diagram of thermodynamically stable structures has been derived. Besides all previously discovered superconducting molybdenum hydrides, we also identified series of thermodynamically metastable superconducting structures, including I4/mmm-Mo3_3H14_{14}, I4cm-MoH9_9, P4/nmm-MoH10_{10} and P421_12-MoH10_{10}, with the superconducting transition temperatures from 55 to 126 K at 300 GPa. In these superconducting molybdenum hydrides, vibrations of the Mo-atoms contributes significantly to the electron-phonon coupling and the superconducting transition temperature, in complementary to the contributions by the vibrations of the H-atoms. Our works highlight the importance of compounds with non-integer composition ratio and metastable states in material searches, for example the potential high temperature superconductors.

Keywords

Cite

@article{arxiv.2307.12404,
  title  = {Crystal structures and high-temperature superconductivity in molybdenum-hydrogen binary system under high pressure},
  author = {Aiqin Yang and Xiangru Tao and Yundi Quan and Peng Zhang},
  journal= {arXiv preprint arXiv:2307.12404},
  year   = {2024}
}
R2 v1 2026-06-28T11:38:07.580Z