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Solid state catholyte or electrolyte for battery using LiaMPbSc (M=Si, Ge, and/or Sn)

机译:使用Li a MP b S c (M = Si,Ge和/或Sn)的电池用固态阴极电解液或电解质

摘要

The present invention provides an energy storage device comprising a cathode region or other element. The device has a major active region comprising a plurality of first active regions spatially disposed within the cathode region. The major active region expands or contracts from a first volume to a second volume during a period of a charge and discharge. The device has a catholyte material spatially confined within a spatial region of the cathode region and spatially disposed within spatial regions not occupied by the first active regions. In an example, the catholyte material comprises a lithium, germanium, phosphorous, and sulfur (“LGPS”) containing material configured in a polycrystalline state. The device has an oxygen species configured within the LGPS containing material, the oxygen species having a ratio to the sulfur species of 1:2 and less to form a LGPSO material. The device has a protective material formed overlying exposed regions of the cathode material to substantially maintain the sulfur species within the catholyte material. Also included is a novel dopant configuration of the LiaMPbSc (LMPS) [M=Si, Ge, and/or Sn] containing material.
机译:本发明提供了一种包括阴极区域或其他元件的储能装置。该器件具有主有源区,该主有源区包括空间上设置在阴极区内的多个第一有源区。在充电和放电期间,主要活性区域从第一体积膨胀或收缩到第二体积。该器件具有阴极电解质材料,该阴极电解质材料在空间上被限制在阴极区域的空间区域内并且在空间上被布置在未被第一有源区域占据的空间区域内。在一个示例中,阴极电解质材料包括构造成多晶态的​​含锂,锗,磷和硫(“ LGPS”)的材料。该装置具有配置在包含LGPS的材料内的氧,氧与硫的比率为1:2或更低,以形成LGPSO材料。该装置具有形成在阴极材料的暴露区域上的保护材料,以基本上将硫物质保持在阴极电解质材料内。还包括Li a MP b S c (LMPS)[M = Si,Ge和/或Sn ]包含材料。

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