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Pressure-Induced Stabilization and Insulator-Superconductor Transition of BH

Chao-Hao Hu, Artem R. Oganov, Qiang Zhu, Guang-Rui Qian, Gilles Frapper, Andriy O. Lyakhov, Huai-Ying Zhou

DOI 10.1103/PhysRevLett.110.165504 · Physical Review Letters

T1

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Abstract

Diborane (B2H6), a high energy density material, was believed to be stable in a wide P, T interval. A systematic investigation of the B-H system using the ab initio variable-composition evolutionary simulations shows that boron monohydride (BH) is thermodynamically stable and can coexist with solid B, H2, and B2H6 in a wide pressure range above 50 GPa. B2H6 becomes unstable and decomposes into the Ibam phase of BH and H2 (C2/c) at 153 GPa. The semiconducting layered Ibam structure of BH at 168 GPa transforms into a metallic phase with space group P6/mmm and a 3D topology with strong B-B and B-H covalent bonds. The Ibam-P6/mmm transformation pathway suggests the possibility of obtaining the metastable Pbcm phase on cold decompression of the P6/mmm phase. The electron-phonon coupling calculations indicate that P6/mmm-BH is a phonon-mediated superconductor with a critical temperature of superconductivity (Tc) of 14.1–21.4 K at 175 GPa.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
BH

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17.75175 GPamidpoint
BH

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35100 GPamidpoint
BH

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15.25200 GPamidpoint
MgB2

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39Pressure unresolvedunknown

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