Published February 14, 2023 | Version v1
Journal article Open

Effect of Film Thickness on the Kinetics of Lithium Insertion in LiMn2O4 Films Made by Multilayer Pulsed Laser Deposition for Thin-Film All-Solid-State Battery Cathode Materials

  • 1. Universität Bremen
  • 2. ROR icon Institut de Recerca de l'Energia de Catalunya
  • 3. ROR icon Institut de Ciència de Materials de Barcelona
  • 4. ROR icon Institució Catalana de Recerca i Estudis Avançats

Description

Multi-layer pulsed laser deposition is a promising technique for producing thin films for solid-state batteries. In this work, thin films are deposited with different numbers of pulses, leading to different thicknesses and grain sizes. We investigated “in operando” the kinetics of the transfer into films by means of dynamic impedance spectroscopy. This technique allowed us to resolve the contributions of the reaction mechanism and of the transport phenomena, as well as to quantify their equivalent resistances. Surprisingly, with increasing film thickness, the charge transfer resistance increases while the apparent diffusion coefficient of lithium increases, leading to a decrease of the mass transport resistance. It appears that both these effects are related to the dimension of the crystals in the thin films. These results provide new insights for an optimal tuning of the materials’ preparation in view of maximizing their electrochemical performances.

Files

Erinmwingbovo_2023_ChemElectroChem_Effect of Film Thickness on the Kinetics of Lithium Insertion in LiMn2O4 Films.pdf

Additional details

Dates

Submitted
2022-06-13
Accepted
2022-11-30