Solid-state structures with volatile sintering aids, and methods for fabrication and use thereof
US-2024429439-A1 · Dec 26, 2024 · US
US2022328865A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2022328865-A1 |
| Application number | US-202217654648-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 14, 2022 |
| Priority date | Dec 2, 2014 |
| Publication date | Oct 13, 2022 |
| Grant date | — |
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A lithium ion-conductive solid electrolyte including a freestanding inorganic vitreous sheet of sulfide-based lithium ion conducting glass is capable of high performance in a lithium metal battery by providing a high degree of lithium ion conductivity while being highly resistant to the initiation and/or propagation of lithium dendrites. Such an electrolyte is also itself manufacturable, and readily adaptable for battery cell and cell component manufacture, in a cost-effective, scalable manner. An automated machine based system, apparatus and methods assessing and inspecting the quality of such vitreous solid electrolyte sheets, electrode sub-assemblies and lithium electrode assemblies can be based on spectrophotometry and can be performed inline with fabricating the sheet or web (e.g., inline with drawing of the vitreous Li ion conducting glass) and/or with the manufacturing of associated electrode sub-assemblies and lithium electrode assemblies and battery cells.
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1 - 35 . (canceled) 36 . A Li ion conductive vitreous sulfide glass sheet in the form of a mother-sheet having a high-quality center portion, with uniform thickness and smooth liquid-like surfaces, and lower quality peripheral edge portions, which generally extend along its lengthwise dimension. 37 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the low-quality peripheral edge portions are removed by slicing. 38 . The Li ion conductive vitreous sulfide glass sheet of claim 37 , wherein the low-quality peripheral edge portions are removed by laser cutting. 39 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the high-quality center portion accounts for at least 50% of the mother-sheet's footprint/area. 40 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the high-quality center portion accounts for at least 60% of the mother-sheet's footprint/area. 41 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the high-quality center portion accounts for at least 70% of the mother-sheet's footprint/area. 42 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the high-quality center portion accounts for at least 80% of the mother-sheet's footprint/area. 43 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the high-quality center portion accounts for at least 90% of the mother-sheet's footprint/area. 44 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the major opposing surfaces of the high-quality center portion of the mother-sheet has an average surface roughness R a <1.0 mm. 45 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the high-quality center portion of the mother-sheet has thin uniform thickness ≤100 mm. 46 . The Li ion conductive vitreous sulfide glass sheet of claim 36 , wherein the mother-sheet is fabricated as a mother-web having a high-quality center portion and once the lower quality edge portions of the mother-web are sliced off the glass sheet is rolled to form a supply roll.
Moulding; Embossing; Cutting · CPC title
Glass · CPC title
Rocking-chair batteries, i.e. batteries with lithium insertion or intercalation in both electrodes; Lithium-ion batteries · CPC title
characterised by the material examined · CPC title
Electrodes based on metals, Si or alloys · CPC title
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