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Superconductivity in hydrogenated carbon nanostructures
Authors:Antonio Sanna  Arkadiy Davydov  John Kay Dewhurst  Sangeeta Sharma  José A Flores-Livas
Institution:1.Max-Planck Institute für MikrostrukturPhysik, Weinberg 2,Hale,Germany;2.Department of Physics,Kings College London,London,UK;3.Department of Physics,Universit?t Basel,Basel,Switzerland
Abstract:We present an application of density functional theory for superconductors to superconductivity in hydrogenated carbon nanotubes and fullerane (hydrogenated fullerene). We show that these systems are chemically similar to graphane (hydrogenated graphene) and like graphane, upon hole doping, develop a strong electron phonon coupling. This could lead to superconducting states with critical temperatures approaching 100 K, however this possibility depends crucially on if and how metallization is achieved.
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