Metal organic framework-derived carbon aerogel, preparation method thereof and application in lithium ion batteries
US-12183924-B2 · Dec 31, 2024 · US
US2025015258A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2025015258-A1 |
| Application number | US-202218710400-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 16, 2022 |
| Priority date | Nov 16, 2021 |
| Publication date | Jan 9, 2025 |
| Grant date | — |
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A negative electrode including a negative electrode current collector; a first negative electrode active material layer on the negative electrode current collector and a second negative electrode active material layer on the first negative electrode active material layer. The first negative electrode active material layer includes a first carbon-containing active material, a first silicon-containing active material, and a first binder. The second carbon-containing active material, a second silicon-containing active material, and a second binder. The first silicon-containing active material includes a first silicon-containing compound and a first metal doped in the first silicon-containing compound. The second silicon-containing active material includes a second silicon-containing compound and a second metal doped in the second silicon-containing compound.
Opening claim text (preview).
1 . A negative electrode comprising: a negative electrode current collector; a first negative electrode active material layer on the negative electrode current collector, wherein the first negative electrode active material layer comprises a first carbon-containing active material, a first silicon-containing active material, and a first binder; and a second negative electrode active material layer on the first negative electrode active material layer, wherein the second negative electrode active material layer comprises a second carbon-containing active material, a second silicon-containing active material, and a second binder, wherein the first silicon-containing active material comprises a first silicon-containing compound represented by SiO x , wherein 0≤x<2, and a first metal doped in the first silicon-containing compound, and wherein the second silicon-containing active material comprises a second silicon-containing compound represented by SiO y , wherein 0≤y<2, and a second metal doped in the second silicon-containing compound, wherein a weight ratio of the first metal based on a total weight of the first silicon-containing compound and the first metal is greater than a weight ratio of the second metal based on a total weight of the second silicon-containing compound and the second metal, and wherein a ratio of a weight percentage of the first binder based on a weight of the first negative electrode active material layer to a weight percentage of the second binder based on a weight of the second negative electrode active material layer is in a range of 0.9:1 to 5.5:1. 2 . The negative electrode of claim 1 , wherein a weight percentage of the first metal is in a range of 10 wt % to 25 wt % based on the total weight of the first silicon-containing compound and the first metal, and a weight percentage of the second metal is in a range of 3 wt % or more to less than 10 wt % based on the total weight of the second silicon-containing compound and the second metal. 3 . The negative electrode of claim 1 , wherein the first metal and the second metal each independently comprise at least one metal selected from the group consisting of lithium (Li), magnesium (Mg), calcium (Ca), and aluminum (Al). 4 . The negative electrode of claim 1 , wherein the first carbon-containing active material and the first silicon-containing active material are present in an amount of 90 wt % to 99 wt % in the first negative electrode active material layer, and a weight ratio of the first carbon-containing active material to the first silicon-containing active material is in a range of 85:15 to 99:1. 5 . The negative electrode of claim 1 , wherein the second carbon-containing active material and the second silicon-containing active material are present in an amount of 90 wt % to 99 wt % in the second negative electrode active material layer, and a weight ratio of the second carbon-containing active material to the second silicon-containing active material is in a range of 85:15 to 99:1. 6 . The negative electrode of claim 1 , wherein the first binder is present in an amount of 1 wt % to 15 wt % in the first negative electrode active material layer. 7 . The negative electrode of claim 1 , wherein the second binder is present in an amount of 1 wt % to 15 wt % in the second negative electrode active material layer. 8 . The negative electrode of claim 1 , wherein a total weight of the first binder and the second binder is in a range of 1 wt % to 15 wt % based on a total weight of the first negative electrode active material layer and the second negative electrode active material layer. 9 . The negative electrode of claim 1 , wherein the first binder and the second binder each independently comprise at least one selected from the group consisting of polyvinylidene fluoride, styrene butadiene rubber, acrylonitrile butadiene rubber, acrylic rubber, butyl rubber, fluoro rubber, polyvinyl alcohol, polyacrylic acid, polyethylene glycol, polyacrylonitrile, and polyacrylamide. 10 . The negative electrode of claim 1 , wherein the first binder and the second binder comprise a styrene butadiene rubber. 11 . The negative electrode of claim 1 , wherein a ratio of a thickness of the first negative electrode active material layer to a thickness of the second negative electrode active material layer is in a range of 1:0.5 to 1:2. 12 . The negative electrode of claim 1 , wherein a sum of a loading amount of the first negative electrode active material layer and a loading amount of the second negative electrode active material layer is in a range of 4 mAh/cm 2 to 8 mAh/cm 2 . 13 . A secondary battery comprising: the negative electrode of claim 1 ; a positive electrode; a separator present between the negative electrode and the positive electrode; and an electrolyte injected in the secondary battery. 14 . The secondary battery of claim 13 , wherein the positive electrode comprises a positive electrode current collector; and a positive electrode active material layer on the positive electrode current collector, wherein the positive electrode active material layer comprises a positive electrode active material comprising a lithium-cobalt-containing oxide.
Negative electrodes · CPC title
being polymers · CPC title
for inserting or intercalating light metals · CPC title
as layered products · CPC title
Physical characteristics, e.g. porosity, surface area · CPC title
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