paper

Superconductivity Induced by Site-Selective Arsenic Doping in MoSi

arXiv:2209.15231 · doi:10.1021/acs.inorgchem.2c01647

Abstract

Arsenic doping in silicides has been much less studied compared with phosphorus. In this study, superconductivity is successfully induced by As doping in MoSi. The superconducting transition temperature () reaches 7.7 K, which is higher than those in previously known WSi-type superconductors. MoSiAs is a type-II BCS superconductor with upper and lower critical fields of 6.65 T and 22.4 mT, respectively. In addition, As atoms are found to selectively take the 8 sites in MoSiAs. The emergence of superconductivity is possibly due to the shift of Fermi level as a consequence of As doping, as revealed by the specific heat measurements and first-principles calculations. Our work provides not only another example of As doping, but also a practical strategy to achieve superconductivity in silicides through Fermi level engineering.

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