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Title: | High-temperature superconductor of sodalite-like clathrate hafnium hexahydride |
Authors: | Tsuppayakorn‑aek, P. Phaisangittisakul, N. Ahuja, R. Bovornratanaraks, T. |
Issue Date: | 25-Oct-2021 |
Abstract: | Hafnium hydrogen compounds have recently become the vibrant materials for structural prediction at high pressure, from their high potential candidate for high-temperature superconductors. In this work, we predict HfH6 by exploiting the evolutionary searching. A high-pressure phase adopts a sodalite-like clathrate structure, showing the body-centered cubic structure with a space group of Im3¯m. The frstprinciples calculations have been used, including the zero-point energy, to investigate the probable structures up to 600GPa, and fnd that the Im3¯m structure is thermodynamically and dynamically stable. This remarkable result of the Im3¯m structure shows the van Hove singularity at the Fermi level by determining the density of states. We calculate a superconducting transition temperature (Tc) using Allen-Dynes equation and demonstrated that it exhibits superconductivity under high pressure with relatively high-Tc of 132 K. |
URI: | http://localhost:8080/xmlui/handle/123456789/3129 |
Appears in Collections: | Year-2021 |
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