Abstract
Room-temperature superconductivity has always been an area of intensive research. Recent findings of clathrate metal hydrides structures have opened up the doors for achieving room-temperature superconductivity in these materials. Here, we report first-principles calculations for stable H-rich clathrate structures of uranium hydrides at high pressures. The clathrate uranium hydrides contain H cages with stoichiometries of H24, H29, and H32, in which H atoms are bonded covalently to other H atoms, and U atoms occupy the centers of the cages. Especially, a UH10 clathrate structure containing H32 cages is predicted to have an estimated Tc higher than 77 K at high pressures.
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CITATION STYLE
Wang, X. H., Zheng, F. W., Gu, Z. W., Tan, F. L., Zhao, J. H., Liu, C. L., … Zhang, P. (2021). Hydrogen Clathrate Structures in Uranium Hydrides at High Pressures. ACS Omega, 6(5), 3946–3950. https://doi.org/10.1021/acsomega.0c05794
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