Abstract
We investigate the role of the substrate for the strength of the electron-phonon coupling in Li-decorated graphene. We find that the interaction with a h-BN substrate leads to a significant enhancement from to , which corresponds to a 25% increase of the transition temperature from to . The superconducting gaps amount to 1.56 meV (suspended) and 1.98 meV (supported). These findings open up a new route to enhanced superconducting transition temperatures in graphene-based materials by substrate engineering. © 2013 EPLA.
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CITATION STYLE
Kaloni, T. P., Balatsky, A. V., & Schwingenschlögl, U. (2013). Substrate-enhanced superconductivity in Li-decorated graphene. EPL, 104(4). https://doi.org/10.1209/0295-5075/104/47013
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