Fabrication of ultrathin Fe-metal organic framework-derived Fe3O4 all solid state battery: Developing test platform for probing the solid electrolyte/ electrode interface

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초록

The integration of iron-based metal-organic frameworks (Fe-MOFs) with Li1.3Al0.3Ti1.7(PO4)3 (LATP) as a solid electrolyte offers a promising pathway toward high-performance, all-solid-state batteries (ASSBs) with enhanced safety and stability. In this study, we report on the fabrication and characterization of an ultrathin Fe-MOF anode interfaced with LATP, leveraging the benefits of electrophoretic deposition (EPD) to create an additive-free and well-controlled thin layer. This architecture allows for direct analysis of the solid electrolyte/electrode interface, eliminating bulk electrode effects and enabling focused investigations of interfacial phenomena critical to ASSB performance. The dominance of diffusion-controlled behavior with a b value of 0.5 with a diffusion coefficient of 3.9 x 10-13 cm2/s arises from the intrinsic bulk redox activity of Fe3O4, the porous nature of the deposited film enabling effective ionic diffusion, and the strong interface with the LATP electrolyte, which facilitates ion transport into the bulk. This work not only highlights the potential of Fe-MOF and LATP in ASSB applications but also establishes an experimental platform for exploring and optimizing solid-state battery interfaces.

키워드

All solid state batteryFe-MOFElectrophoretic depositionLi-metal battery
제목
Fabrication of ultrathin Fe-metal organic framework-derived Fe3O4 all solid state battery: Developing test platform for probing the solid electrolyte/ electrode interface
저자
Park, Byoung-Nam
DOI
10.1016/j.matlet.2025.139073
발행일
2025-11-15
유형
Article
저널명
Materials Letters
399