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Superconductivity induced by gate-driven hydrogen intercalation in the charge-density-wave compound 1T-TiSe2

Academic Article
Publication Date:
2023
abstract:
Hydrogen (H) plays a key role in the near-to-room temperature superconductivity of hydrides at megabar pressures. This suggests that H doping could have similar effects on the electronic and phononic spectra of materials at ambient pressure as well. Here, we demonstrate the non-volatile control of the electronic ground state of titanium diselenide (1T-TiSe2) via ionic liquid gating-driven H intercalation. This protonation induces a superconducting phase, observed together with a charge-density wave through most of the phase diagram, with nearly doping-independent transition temperatures. The H-induced superconducting phase is possibly gapless-like and multi-band in nature, in contrast with those induced in TiSe2 via copper, lithium, and electrostatic doping. This unique behavior is supported by ab initio calculations showing that high concentrations of H dopants induce a full reconstruction of the bandstructure, although with little coupling between electrons and high-frequency H phonons. Our findings provide a promising approach for engineering the ground state of transition metal dichalcogenides and other layered materials via gate-controlled protonation.
Iris type:
1.1 Articolo in rivista
List of contributors:
Piatti, Erik; Prando, Giacomo; Meinero, Martina; Tresca, Cesare; Putti, Marina; Roddaro, Stefano; Lamura, Gianrico; Shiroka, Toni; Carretta, Pietro; Profeta, Gianni; Daghero, Dario; Gonnelli, Renato S.
Authors of the University:
CARRETTA PIETRO
PRANDO GIACOMO
Handle:
https://iris.unipv.it/handle/11571/1482338
Published in:
COMMUNICATIONS PHYSICS
Journal
  • Overview

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URL

https://www.nature.com/articles/s42005-023-01330-w
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