A Metastable CaSH Phase Composed of HS Honeycomb Sheets that is Superconducting Under Pressure
arXiv:2012.14985 · doi:10.1021/acs.jpclett.0c02299
Abstract
Evolutionary searches predicted a number of ternary phases that could be synthesized at pressures of 100-300~GPa. CaSH, CaSH, CaSH, and CaSH were composed of a Ca-S lattice along with H molecules coordinated in a ``side-on'' fashion to Ca. The H-H bond lengths in these semiconducting phases were elongated because of H Ca d donation, and Ca d H back-donation, via a Kubas-like mechanism. CaSH, consisting of two-dimensional HS and CaH sheets, was metastable and metallic above \edit{128~GPa}. The presence of van Hove singularities increased its density of states at the Fermi level, and concomitantly the superconducting critical temperature, which was estimated to be as high as \edit{100~K at 128~GPa}. This work will inspire the search for superconductivity in materials based upon \edit{honeycomb HX (X=S, Se, Te), and MH (M=Mg, Ca, Sr, Ba) layers} under pressure.
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