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Excellent Electrochemical Compatibility of Li-rich Glass-Ceramic Solid Electrolyte Enabling Superior All-Solid-state Lithium Batteries

Journal of Materials Science and Technology/Journal of materials science & technology(2024)

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摘要
Li2S-P2S5-type inorganic solid electrolytes with cation and/or anion doping are considered to be promising candidates for all-solid-state batteries (ASSBs), due to their high ionic conductivity and electrochemical performances. However, compositional tuning of Li2S-P2S5 type inorganic solid electrolytes without doping has not been fully studied. In this work, Li-rich Li7P2S8I solid electrolyte was prepared with compositional tuning by high energy ball mill process. The crystalline nature and the structural characteristics of the prepared solid electrolytes were studied with several physiochemical techniques. The effect of compositional tuning and the associated limitations were analyzed by laser Raman spectroscopy and solid-nuclear magnetic resonance spectroscopy (NMR) analysis techniques. The prepared Li-rich Li7P2S8I solid electrolyte exhibited higher ionic conductivity (6.27 mS cm-1) than the bare Li7P2S8I solid electrolyte (5.16 mS cm-1). Further, the prepared Li7.1P2S8.1I0.9 solid electrolyte is highly stable against lithium metal anode and is stable up to 600 charge-discharge cycles. Thus, the fabricated ASSB using Li-rich Li7P2S8I solid electrolyte exhibited excellent cycle stability of 97% specific capacity retention with less interfacial reaction. Electrochemical impedance spectroscopy and the laser Raman spectroscopy analysis after galvanostatic charge-discharge cycling confirmed the electrochemical stability of Li-rich Li7P2S8I solid electrolyte. (c) 2024 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology.
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关键词
Solid electrolyte,Li7 P2 S8 I,Li-rich solid electrolyte,Ionic conductivity,High stability,All-solid-state batteries
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