LLTO storųjų sluoksnių elektrinės savybės

  • E. Kazakevičius
  • A. Žalga
  • V. Kavaliukė
  • S. Daugėla
  • T. Šalkus
  • A. Kežionis

Anotacija

Li0.4La0.56TiO3 (LLTO) lithium-ion conducting solid electrolyte has been synthesized by aqueous sol-gel synthesis method. The free standing and alumina substrate supported thick films have been prepared from the obtained powder by tape casting. The films and bulk ceramics were studied by impedance spectroscopy in the frequency range from 10 Hz to 10 GHz. The equivalent circuit modelling was implemented in order to determine the electrical parameters of LLTO films and ceramics. The free standing LLTO films grain conductivity was found to be similar to the one of ceramic sample, while the grain boundary conductivity of the free standing film was slightly higher compared to LLTO ceramics.

Publikuotas
2022-12-10
Skyrius
Condensed Matter Physics and Technology