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

机译:使用Liampbsc(m = si,ge和/或sn)的电池的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:本发明提供一种能量存储装置,包括阴极区域或其他元件。该装置具有主要的有源区,包括多个空间上设置在阴极区域内的第一有源区。在充电和放电期间,主要的活性区域在第一卷到第二卷扩展或收缩。该装置具有空间上限制在阴极区域的空间区域内的阴极电解质材料,并且在不被第一有源区占据的空间区域内空间设置。在一个示例中,阴极电解液材料包含含有在多晶态中构造的材料的锂,锗,磷和硫(“LGPS”)。该装置具有在含LGPS材料中配置的氧物质,其氧物质与硫种类的比例为1:2和更少形成LGPSO材料。该装置具有形成覆盖阴极材料的暴露区域的保护材料,以基本上保持阴极电解液材料内的硫物质。还包括一种新型掺杂剂含有材料的LiampBSC(LMP)[M = Si,Ge和/或Sn]。

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