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Hydrogen Pentagraphenelike Structure Stabilized by Hafnium: A High-Temperature Conventional Superconductor

Hui Xie, Yansun Yao, Xiaolei Feng, Defang Duan, Hao Song, Zihan Zhang, Shuqing Jiang, Simon A. T. Redfern, Vladimir Z. Kresin, Chris J. Pickard, Tian Cui

DOI 10.1103/PhysRevLett.125.217001 · Physical Review Letters

T1

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Abstract

The recent discovery of H3S and LaH10 superconductors with record high superconducting transition temperatures Tc at high pressure has fueled the search for room-temperature superconductivity in the compressed superhydrides. Here we introduce a new class of high Tc hydrides with a novel structure and unusual properties. We predict the existence of an unprecedented hexagonal HfH10, with remarkably high value of Tc (around 213–234 K) at 250 GPa. As concerns the novel structure, the H ions in HfH10 are arranged in clusters to form a planar “pentagraphenelike” sublattice. The layered arrangement of these planar units is entirely different from the covalent sixfold cubic structure in H3S and clathratelike structure in LaH10. The Hf atom acts as a precompressor and electron donor to the hydrogen sublattice. This pentagraphenelike H10 structure is also found in ZrH10, ScH10, and LuH10 at high pressure, each material showing a high Tc ranging from 134 to 220 K. Our study of dense superhydrides with pentagraphenelike layered structures opens the door to the exploration of a new class of high Tc superconductors.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
HfH10

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223.5250 GPamidpoint
HfH10

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221300 GPamidpoint
ZrH10

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209.5250 GPamidpoint
ZrH10

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206300 GPamidpoint
ScH10

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146250 GPamidpoint
LuH10

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143200 GPamidpoint
H3S

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203200 GPaunknown
LaH10

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250200 GPaunknown

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