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Article Dans Une Revue Thin Solid Films Année : 2020

Enhancement of PbZrO3 polarization using a Ti seed layer for energy storage application

Caroline Borderon
Raphaël Renoud
Hartmut W Gundel
  • Fonction : Auteur

Résumé

Enhancement of lead zirconate (PbZrO 3) polarization is achieved by using a titanium seed layer on alumina polycrystalline substrate. Thanks to the reduction of the lattice mismatch between the platinum electrode (3.92 Å) and the PbZrO 3 films (4.14 Å), lead zirconate thin films oriented along the (111) direction with an orientation factor of around 65 % has been obtained. The (111) PbZrO 3 presents an increase of 56 % of the polarization compared to the (100) PbZrO 3. This enhancement is responsible of the higher recoverable energy storage density obtained in the (111) PbZrO 3 thin films (8 J/cm 3 at 600 kV/cm with an efficiency of 72 %). The (111) PbZrO 3 also has a higher figure of merit, which indicates that the (111) crystallographic plane is the most favorable direction for energy storage.

Domaines

Matériaux
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Dates et versions

hal-03115136 , version 1 (02-02-2021)

Identifiants

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Mamadou D Coulibaly, Caroline Borderon, Raphaël Renoud, Hartmut W Gundel. Enhancement of PbZrO3 polarization using a Ti seed layer for energy storage application. Thin Solid Films, 2020, 716, pp.138432. ⟨10.1016/j.tsf.2020.138432⟩. ⟨hal-03115136⟩
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