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High-temperature superconductivity of boron-carbon clathrates at ambient pressure

Junda Li, Jincheng Yue, Siqi Guo, Ao Zhang, Li Zhu, Hao Song, Zhao Liu, Yanhui Liu, Tian Cui

DOI 10.1103/PhysRevB.109.144509 · Physical Review B

T1

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Abstract

The successful synthesis of the carbon-boron clathrate SrB3C3 under high-pressure conditions of 50 GPa opens up a new possibility for exploring high-temperature superconductors at ambient pressure. Based on the first-principle calculation, we designed a class of LaH10-like clathrate compounds Fm3¯m−XB2C8 (X = K, Rb, Cs, Sr, Ba, Ga, In, Tl, Sn, Pb, and Bi) and investigate their physical properties and potential superconductivities. Our calculations reveal that the dynamic stability of Fm3¯m−XB2C8 at ambient pressure is determined by the degree of compatibility between the host metal X and the carbon-boron sublattices. Especially, p orbitals of the p-region metals can enhance the interaction of the guest atoms with B-C cages, which results in maintaining these clathrates as dynamically stable. Moreover, altering the oxidation states of the guest atoms can adjust the electronic density of states near the Fermi surface, which in turn affects the superconducting transition temperatures (Tc's) of these compounds. Herein, when filled with +1 oxidation state metals, the Tc's of XB2C8 (X = K, Rb, Cs, Ga, In, and Tl) all exceed the liquid-nitrogen boiling point of 77 K and the Tc of TlB2C8 is expected to reach 96 K at ambient pressure, which is the highest among the studied carbon-boron compounds.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
SrB3C3

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—50 GPaunknown
MgB2

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39Pressure unresolvedunknown
TlB2C8

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96Pressure unresolvedunknown
KB2C8

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77Pressure unresolvedunknown
RbB2C8

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77Pressure unresolvedunknown
CsB2C8

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77Pressure unresolvedunknown
GaB2C8

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77Pressure unresolvedunknown
InB2C8

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77Pressure unresolvedunknown

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