Separator for secondary battery, manufacturing method thereof, method for manufacturing secondary battery comprising the separator and secondary battery manufactured by the method
US-12183949-B2 · Dec 31, 2024 · US
US9666908B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9666908-B2 |
| Application number | US-201213628237-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 27, 2012 |
| Priority date | Jul 13, 2012 |
| Publication date | May 30, 2017 |
| Grant date | May 30, 2017 |
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A lithium ion battery includes at least one battery cell. The battery cell includes a cathode electrode, an anode electrode, and a separator. The separator is sandwiched between the cathode electrode and the anode electrode. At least one of the cathode electrode and the anode electrode includes a current collector. The current collector is a graphene layer.
Opening claim text (preview).
What is claimed is: 1. A lithium ion battery comprising at least one battery cell, the at least one battery cell comprising: a cathode electrode comprising a cathode material layer and a cathode current collector located on a surface of the cathode material layer, the cathode current collector consisting of a single graphene, the cathode material layer consisting of a plurality of cathode active material particles and a plurality of carbon nanotubes; an anode electrode; and a separator sandwiched between the cathode electrode and the anode electrode. 2. The lithium ion battery of claim 1 , wherein the plurality of carbon nanotubes are entangled with each other and combined by Van der Waals attractive force therebetween to form an integral continuous net structure having a plurality of micropores. 3. The lithium ion battery of claim 1 , wherein the plurality of cathode active material particles are dispersed in the net structure and attached on the surface of the carbon nanotubes. 4. The lithium ion battery of claim 1 , wherein the cathode material layer and the cathode current collector are two separate layer structures. 5. The lithium ion battery of claim 1 , wherein the cathode electrode further comprises two cathode material layers and the cathode current collector, and the cathode current collector is sandwiched by the two cathode material layers. 6. The lithium ion battery of claim 1 , wherein the anode electrode further comprises an anode material layer and a graphene layer stacked with the anode material layer. 7. The lithium ion battery of claim 6 , wherein the anode material layer consists of a plurality of anode active material particles and a plurality of carbon nanotubes. 8. The lithium ion battery of claim 7 , wherein the plurality of carbon nanotubes are entangled with each other and combined by Van der Waals attractive force therebetween to form an integral continuous net structure having a plurality of micropores. 9. The lithium ion battery of claim 1 , wherein the lithium ion battery comprises a plurality of battery cells stacked with each other. 10. A lithium ion battery comprising at least one battery cell, the at least one battery cell comprising: a cathode electrode, the cathode electrode comprises a cathode material layer and a cathode current collector stacked with the cathode material layer, the cathode material layer consisting of a plurality of cathode active material particles and a plurality of carbon nanotubes; an anode electrode, the anode electrode comprises an anode material layer and an anode current collector located on a surface of the anode material layer, the anode current collector consisting of a single graphene; and a separator sandwiched between the cathode material layer and the anode material layer. 11. The lithium ion battery of claim 10 , wherein the cathode electrode comprises two cathode material layers and one cathode current collector, and the cathode current collector is sandwiched by the two cathode material layers. 12. The lithium ion battery of claim 10 , wherein the anode electrode comprises two anode material layers and one anode current collector, and the anode current collector is sandwiched between the two anode material layers. 13. The lithium ion battery of claim 12 , wherein the anode material layer consists of a plurality of anode active material particles and a plurality of carbon nanotubes. 14. The lithium ion battery of claim 1 , wherein the cathode material layer is located between the separator and the cathode current collector. 15. The lithium ion battery of claim 1 , wherein the cathode active material particles and the plurality of carbon nanotubes fixed together by van der Waals attractive force therebetween. 16. The lithium ion battery of claim 1 , wherein a length of the plurality of carbon nanotubes is longer than 200 micrometers. 17. The lithium ion battery of claim 16 , wherein the plurality of carbon nanotubes are entangled with each other and combined by van der Waals attractive force therebetween to form an integral continuous net structure having a plurality of micropores. 18. The lithium ion battery of claim 17 , wherein the plurality of cathode active material particles are dispersed in the net structure and attached on the surface of the plurality of carbon nanotubes.
Carbon or graphite · CPC title
in the form of layers, e.g. coatings · CPC title
Metal or alloys, e.g. alloy coatings (H01M4/669 take precedence) · CPC title
containing carbon or carbonaceous materials as conductive part, e.g. graphite, carbon fibres · CPC title
Li-accumulators · CPC title
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