Tailoring defects and interfaces in sulfide solid electrolytes for high-performance solid-state sodium batteries

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초록

This review focuses on defect chemistry and ion transport in sodium sulfide solid electrolytes, emphasizing the influence of intrinsic and extrinsic defects, grain boundaries, and insights from advanced computational studies. By comparing sodium and lithium electrolyte systems, it highlights the unique challenges and opportunities in sodium-based solid electrolytes. Additionally, doping strategies, emerging materials, and hybrid approaches to enhance ionic conductivity and interfacial stability are explored. Practical implications regarding defect formation energies, grain boundary contributions, and interface effects are critically discussed, providing a comprehensive roadmap for advancing solid-state sodium batteries.

키워드

LithiumSodiumSodium SulfideSulfideGrain BoundariesHybrid MaterialsInterface StatesIonic Conduction In SolidsLithiumSodiumSolid ElectrolytesSolid-state BatteriesSulfur CompoundsComputational StudiesDefect ChemistryDefect GrainsExtrinsic DefectsGrain-boundariesIntrinsic DefectsIon-transportPerformanceSodium BatterySodium SulfidesSodium SulfideElectrolyteLithiumSodiumSodium SulfideSulfideConductanceGrainIon TransportIonizationPharmaceuticsReviewSolidSolid StateGLASS-CERAMIC ELECTROLYTESSUPERIONIC CONDUCTORNA3PS4 ELECTROLYTEIONIC-CONDUCTIVITYLITHIUMNA3SBS4STABILITYINSIGHTSTRANSPORTDYNAMICS
제목
Tailoring defects and interfaces in sulfide solid electrolytes for high-performance solid-state sodium batteries
저자
Ganesan, Bala KrishnanLee, Young-JunKim, Dong Won
DOI
10.1039/d5cc03327f
발행일
2025-08
유형
Review
저널명
Chemical Communications
61
66
페이지
12232 ~ 12245