Liquid Electrolyte Composition, and Electrochemical Cell Comprising Said Electrolyte Composition
US-2024347772-A1 · Oct 17, 2024 · US
US9281129B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9281129-B2 |
| Application number | US-201313894570-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 15, 2013 |
| Priority date | May 16, 2012 |
| Publication date | Mar 8, 2016 |
| Grant date | Mar 8, 2016 |
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Silicon oxide particles each comprising an inner portion having an iron content of 10-1,000 ppm and an outer portion having an iron content of up to 30 ppm are suitable as negative electrode active material in nonaqueous electrolyte secondary batteries. Using a negative electrode comprising the silicon oxide particles as active material, a lithium ion secondary battery or electrochemical capacitor having a high capacity and improved cycle performance can be constructed.
Opening claim text (preview).
The invention claimed is: 1. Silicon oxide particles forming a negative electrode in a nonaqueous electrolyte secondary battery having an average particle size of 0.1 to 30 μm and a BET specific surface area of 0.5 to 30 m 2 /g, wherein a first iron content of inner portion of the silicon oxide particles is 15 to 1,000 ppm, and a second iron content of outer portion of the silicon oxide particles is 4 to 10 ppm, and wherein the inner portion is different from the outer portion. 2. The silicon oxide particles of claim 1 , wherein the second iron content of outer portion of the silicon oxide particles is determined by a method where a powder sample is mixed with 50% by weight of aqua regia and heated at 170° C. for dissolution, followed by cooling, static holding, and filtration, and a obtained filtrate is analyzed by ICP-AES to determine the second iron content of outer portion of the silicon oxide particles, and the first iron content of inner portion of the silicon oxide particles is determined by a method, where a total iron content of particles is measured by adding 50% by weight of hydrofluoric acid to a powder sample, once reaction begins, 50% by weight of nitric acid is further added to obtain a liquid, the liquid is heated at 200° C. until complete melting, the liquid is analyzed by ICP-AES to determine the total first iron content of particles, and then the iron content of inner portion of the silicon oxide particles is determined by subtracting the second iron amount of outer portion from the total iron amount ((the total iron content)-(the second iron content of outer portion of the silicon oxide particles)). 3. The silicon oxide particles of claim 1 , wherein the first iron content of inner portion of the silicon oxide particles is 20 to 800 ppm. 4. The silicon oxide particles of claim 1 , wherein the first iron content of inner portion of the silicon oxide particles is 15 to 850 ppm, and the second iron content of outer portion of the silicon oxide particles is 4 to 5 ppm. 5. The silicon oxide particles of claim 1 , wherein the silicon oxide particles are prepared by a method, the method comprising the steps of: providing a feed material capable of generating SiO gas and having an iron content of 100 to 20,000 ppm; heating the feed material in an inert gas under normal or reduced pressure at a temperature in a range of 1,100 to 1,600° C. to generate a SiO gas; cooling the SiO gas for deposition; and grinding the deposit in a grinding machine devoid of iron contamination.
characterised by their material · CPC title
for non-aqueous cells (H01M4/485 takes precedence) · CPC title
as layered products · CPC title
Physical characteristics, e.g. porosity, surface area · CPC title
of electrodes based on metals, Si or alloys · CPC title
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