Strong coupling superconductivity in trilayer film LiB2C2

Abstract

Coupling between σ-bonding electrons and phonons is generally very strong. To metallize σ-electrons provides a promising route to hunt for new high-Tc superconductors. Based on this picture and first-principles density functional calculation with Wannier interpolation for electronic structure and lattice dynamics, we predict that trilayer film LiB2C2 is a good candidate to realize this kind of high-Tc superconductivity. By solving the anisotropic Eliashberg equations, we find that free-standing trilayer LiB2C2 is a phonon-mediated superconductor with Tc exceeding the liquid-nitrogen temperature at ambient pressure. The transition temperature can be further raised to 125 K by applying a biaxial tensile strain.

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