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Tellurium Hydrides at High Pressures: High-Temperature Superconductors

Xin Zhong, Hui Wang, Jurong Zhang, Hanyu Liu, Shoutao Zhang, Hai-Feng Song, Guochun Yang, Lijun Zhang, Yanming Ma

DOI 10.1103/PhysRevLett.116.057002 · Physical Review Letters

T1

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Abstract

Observation of high-temperature superconductivity in compressed sulfur hydrides has generated an irresistible wave of searches for new hydrogen-containing superconductors. We herein report the prediction of high-Tc superconductivity in tellurium hydrides stabilized at megabar pressures identified by first-principles calculations in combination with a swarm structure search. Although tellurium is isoelectronic to sulfur or selenium, its heavier atomic mass and weaker electronegativity makes tellurium hydrides fundamentally distinct from sulfur or selenium hydrides in stoichiometries, structures, and chemical bondings. We identify three metallic stoichiometries of H4Te, H5Te2, and HTe3, which are not predicted or known stable structures for sulfur or selenium hydrides. The two hydrogen-rich H4Te and H5Te2 phases are primarily ionic and contain exotic quasimolecular H2 and linear H3 units, respectively. Their high-Tc (e.g., 104 K for H4Te at 170 GPa) superconductivity originates from the strong electron-phonon couplings associated with intermediate-frequency H-derived wagging and bending modes, a superconducting mechanism which differs substantially with those in sulfur or selenium hydrides where the high-frequency H-stretching vibrations make considerable contributions.

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FormulaReported Tc (K)Pressure (GPa)Type
H4Te

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104170 GPaunknown
H4Te

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99200 GPaunknown
H5Te2

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58200 GPaunknown
HTe

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19200 GPaunknown
H2S

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203Pressure not reportedunknown

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