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Functionalized Sulfide Solid Electrolyte with Air-Stable and Chemical-Resistant Oxysulfide Nanolayer for All-Solid-State Batteries

机译:用于全固态电池的官能化硫化物固体电解质,具有空气稳定和耐化学氧氟氢脲纳米组

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Sulfide solid electrolytes (SEs) with high Li-ion conductivities (σ_(ion)) and soft mechanical properties have limited applications in wet casting processes for commercial all-solid-state batteries (ASSBs) because of their inherent atmospheric and chemical instabilities. In this study, we fabricated sulfide SEs with a novel core–shell structure via environmental mechanical alloying, while providing sufficient control of the partial pressure of oxygen. This powder possesses notable atmospheric stability and chemical resistance because it is covered with a stable oxysulfide nanolayer that prevents deterioration of the bulk region. The core–shell SEs showed a σ_(ion) of more than 2.50 mS cm~(–1) after air exposure (for 30 min) and reaction with slurry chemicals (mixing and drying for 31 min), which was approximately 82.8% of the initial σ_(ion). The ASSB cell fabricated through wet casting provided an initial discharge capacity of 125.6 mAh g~(–1). The core–shell SEs thus exhibited improved powder stability and reliability in the presence of chemicals used in various wet casting processes for commercial ASSBs.
机译:具有高锂离子电导率的硫化物固体电解质(SES)(σ_(离子))和软机械性能在商业全固态电池(ASSB)的湿铸件中具有有限的应用,因为其固有的大气和化学稳定性。在这项研究中,我们通过环境机械合金化用新型芯壳结构制造硫化物SE,同时提供足够的氧气压力的控制。该粉末具有显着的大气稳定性和耐化学性,因为它覆盖着稳定的氧硫化物纳米纳米,其防止散装区域的劣化。在空气暴露(30分钟)和与浆料化学品(混合和干燥31分钟混合31分钟)后,核壳SE显示σ_(离子)大于2.50ms cm〜(-1)的σ_(离子),并且约为82.8%初始Σ_(离子)。通过湿铸件制造的ASSB电池提供了125.6mAhg〜(-1)的初始放电容量。因此,核心壳SES在用于商业ASSBS的各种湿铸件的化学物质存在下表现出改善的粉末稳定性和可靠性。

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