English

Room-Temperature Superconductivity in Boron-Nitrogen Doped Lanthanum Superhydride

Superconductivity 2022-01-05 v1 Materials Science

Abstract

Recent theoretical and experimental studies of hydrogen-rich materials at megabar pressures (i.e., >100 GPa) have led to the discovery of very high-temperature superconductivity in these materials. Lanthanum superhydride LaH10_{10} has been of particular focus as the first material to exhibit a superconducting critical temperature (Tc_c) near room temperature. Experiments indicate that the use of ammonia borane as the hydrogen source can increase the conductivity onset temperatures of lanthanum superhydride to as high as 290 K. Here we examine the doping effects of B and N atoms on the superconductivity of LaH10_{10} in its fcc (Fm-3m) clathrate structure at megabar pressures. Doping at H atomic positions strengthens the H32_{32} cages of the structure to give higher phonon frequencies that enhance the Debye frequency and thus the calculated Tc_c. The predicted Tc_c can reach 288 K in LaH9.985_{9.985}N0.015_{0.015} within the average high-symmetry structure at 240 GPa.

Keywords

Cite

@article{arxiv.2012.13398,
  title  = {Room-Temperature Superconductivity in Boron-Nitrogen Doped Lanthanum Superhydride},
  author = {Yanfeng Ge and Fan Zhang and Russell J. Hemley},
  journal= {arXiv preprint arXiv:2012.13398},
  year   = {2022}
}

Comments

10 pages, 4 figures