Dimensional constraints for three-dimensional batteries
US-2018166735-A1 · Jun 14, 2018 · US
US10991987B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10991987-B2 |
| Application number | US-201716314912-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 23, 2017 |
| Priority date | Feb 23, 2017 |
| Publication date | Apr 27, 2021 |
| Grant date | Apr 27, 2021 |
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A solid state battery ( 10 ) including a stack of cells ( 22 ), each cell comprising a positive electrode ( 12 ), a negative electrode ( 14 ) and a solid electrolyte ( 16 ) disposed between the positive electrode ( 12 ) and the negative electrode ( 14 ), wherein a current collector ( 18 ) is disposed between the negative electrode ( 14 ) of a first cell ( 20 A) and the positive electrode ( 12 ) of a second cell ( 20 B), the second cell ( 20 B) being adjacent to the first cell ( 20 A), the solid state battery ( 10 ) comprising an ionic conductor ( 26 ) having two configurations, a normal configuration wherein the ionic conductor ( 26 ) is not in contact with the current collector ( 18 ) and a short-circuit configuration wherein the ionic conductor ( 26 ) is in contact with the current collector ( 18 ), the negative electrode ( 14 ) of the first cell ( 20 A) and the positive electrode ( 12 ) of the second cell ( 20 B) and wherein the ionic conductor ( 26 ) has an ionic conductivity which smaller than an electronic conductivity of the current collector ( 18 ).
Opening claim text (preview).
The invention claimed is: 1. A solid state battery comprising a stack of cells, each cell comprising a positive electrode, a negative electrode and a solid electrolyte disposed between the positive electrode and the negative electrode, wherein a current collector is disposed between the negative electrode of a first cell and the positive electrode of a second cell, the second cell being adjacent to the first cell, the solid state battery comprising an ionic conductor being configured to move into two positions, the two positions comprising a normal position wherein the ionic conductor is not in contact with the current collector and a short-circuit position wherein the ionic conductor is in contact with the current collector, the negative electrode of the first cell and the positive electrode of the second cell and wherein the ionic conductor has an ionic conductivity which smaller than an electronic conductivity of the current collector. 2. The solid state battery according to claim 1 , wherein the ionic conductivity of the ionic conductor is equal to or greater than 10 −5 S/cm. 3. The solid state battery according to claim 1 , wherein the ionic conductor is configured to move from the normal position to the short-circuit position at a temperature equal to or greater than 100° C. 4. The solid state battery according to claim 1 , wherein the ionic conductor is a polymer ionic conductor. 5. The solid state battery according to claim 1 , wherein the ionic conductor is an inorganic ionic conductor. 6. The solid state battery according to claim 1 , wherein the ionic conductor is mounted on a bimetallic actuator. 7. The solid state battery according to claim 6 , wherein the stack of cells is surrounded by a metallic casing and a metal forming the bimetallic actuator is the same metal as the metallic casing. 8. The solid state battery according to claim 1 , comprising n cells and a number of ionic conductors equal to or greater than n/10. 9. The solid state battery according to claim 1 , wherein the ionic conductor is a solid state ionic conductor.
Metals · CPC title
Manufacturing or production processes characterised by the final manufactured product · CPC title
Polymeric materials, e.g. gel-type or solid-type · CPC title
Solid materials · CPC title
with bipolar electrodes · CPC title
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