Effects of electrolyte interlayers on suppressing reactions with LiFePO4 and argyrodite-based sulfides in solid-state batteries

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초록

Although LiFePO4 (LFP) is considered a promising cathode active material (CAM) because of its excellent cost-effectiveness and thermal stability, its interfacial compatibility with sulfide-based solid electrolytes in all-solid-state batteries (ASSBs) remains a major technical hurdle. Herein, we investigated the effects of electrolyte interlayers to achieve high-efficiency LFP-based CAMs by applying interlayers of an argyrodite-based sulfide [Li5.4PS4.4Cl0.8Br0.8 (LPSCB)] or a halide with high Li-ion conductivity [Li3InCl6 (LIC) or Li2.5Y0.5Zr0.5Cl6 (LYZC)]. As a result, the ASSB cell with an LIC or LYZC interlayer exhibited better electrochemical performance than that with LPSCB, with initial discharge capacities of 113.5 and 110.3 mAh g-1 at 0.1C, respectively. In particular, the sulfide interlayer suffered from serious Fe2+ oxidation because it interacted with other anions. Regarding the halides, LYZC was stable in contact with the sulfide SE but showed low reactivity with LFP, whereas LIC was stable with LFP but quite unstable with the sulfide SE. This strategy provides valuable insights for achieving superior interfacial structures in LFP-based ASSBs.

키워드

Ferrous IonLithium IonSulfideBromine CompoundsSelenium CompoundsSolid ElectrolytesAll-solid-state BatteryBattery CellsCathode Active MaterialHigher EfficiencyInterfacial CompatibilityLi Ion ConductivitiesLifepo 4Solid State BatteriesSulfide-based Solid ElectrolytesThermalSulfur CompoundsAnionArgyrodite Based Sulfide DerivativeChemical CompoundElectrolyteFerrous IonHalideLithium IonLithium Iron PhosphateSulfideUnclassified DrugArticleCell StructureComparative StudyConductanceControlled StudyElectrochemical AnalysisOxidationSolid StateLITHIUM-ION BATTERY
제목
Effects of electrolyte interlayers on suppressing reactions with LiFePO4 and argyrodite-based sulfides in solid-state batteries
저자
Jung, Jee YunKim, Hyoungchul
DOI
10.1039/d5nj00262a
발행일
2025-03-31
유형
Article
저널명
New Journal of Chemistry
49
14
페이지
6012 ~ 6019