Superconductivity in intercalated group-IV honeycomb structures
arXiv:1411.4792 · doi:10.1103/PhysRevB.91.054508
Abstract
We present a theoretical investigation on electron-phonon superconductivity of honeycomb MX layered structures. Where X is one element of the group-IV (C, Si or Ge) and M an alkali or an alkaline-earth metal. Among the studied composition we predict a of 7 K in RbGe, 9 K in RbSi and 11 K in SrC. All these compounds feature a strongly anisotropic superconducting gap. Our results show that despite the different doping and structural properties, the three families of materials fall into a similar description of its superconducting behavior. This allows us to estimate an upper critical temperature of about 20 K for the class of intercalated group-IV structures, including intercalated graphite and doped graphene.
Phys. Rev. B
References in corpus (6)
- Electric Field Effect in Atomically Thin Carbon Films
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Superconductivity in Heavy Alkaline-Earths Intercalated Graphites
- Pressure-induced Superconductivity in CaC2
- Evidence for gap anisotropy in CaC6 from directional point-contact spectroscopy
- Far-infrared signature of the superconducting gap in intercalated graphite CaC6
Cited by in corpus (10)
- Coulomb interactions and conventional superconductivity: when going beyond the random phase approximation is essential
- Topological and nodal superconductor kagome magnesium triboride
- Alkali doping of graphene: the crucial role of high temperature annealing
- Higher-order topological and nodal superconducting transition-metal sulfides MS (M = Nb and Ta)
- Electron-phonon superconductivity in C-doped topological nodal-line semimetal ZrPt: A muon spin rotation and relaxation (SR) study
- Exploring Superconductivity in BaIrGe: Experimental and Theoretical Insights
- Probing the superconducting gap structure of ScRuSi via SR and first-principles calculations
- MPd5 kagome superconductors studied by density functional calculations
- Ah-SCDFT:A general approach for superconductivity with an-harmonic corrections
- Effect of superconductivity by Nb and V substitution in kagome CaPd5