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Szkudlarek, Piotr, 2026, "Supporting data for: Superconducting lithium hydride in a chemical capacitor setup. A theoretical study", https://doi.org/10.58132/RBYQKC, Dane Badawcze UW, V1
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This repository contains the raw computational data generated during the preparation of the publication: “Superconducting Lithium Hydride in a Chemical Capacitor Setup: A Theoretical Study.”
The files stored here represent intermediate and final outputs obtained from first-principles simulations performed during the investigation of superconductivity in doped lithium hydride systems. More details can be found in the file readme.txt.
The thumbnail presents the cover from ChemPhysChem: Volume 26, Issue 13, which shows that lithium hydride, a transparent insulator of electricity, may be turned into a good copper-like metal when hole-doped in a chemical capacitor setup. Artwork by Małgorzata Fürst based on a photograph by James St. John used under a CC-BY 2.0 licence.
chemical capacitor, lithium hydride, superconductivity, metallization, hole doping, DFT calculations, electron-phonon coupling, Quantum ESPRESSO
Szudlarek, P.G., Renskers, C., Margine, E.R. and Grochala, W. (2025), Superconducting Lithium Hydride in a Chemical Capacitor Setup: A Theoretical Study. ChemPhysChem, 26: e202500013. https://doi.org/10.1002/cphc.202500013 https://doi.org/10.1002/cphc.202500013 doi: 10.1002/cphc.202500013
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