Polyimide-based binder for power storage device, electrode mixture paste, negative electrode active material layer, negative electrode sheet for power storage device, and power storage device
US-12176543-B2 · Dec 24, 2024 · US
US2019334175A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019334175-A1 |
| Application number | US-201816476929-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 10, 2018 |
| Priority date | Jan 17, 2017 |
| Publication date | Oct 31, 2019 |
| Grant date | — |
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An electrode slurry contains (A) a cellulose fiber, (B) a carboxymethyl-group-containing cellulose ether or a salt thereof, and a particulate material containing at least (C) an electrode active material, and the cellulose fiber (A) has an average fiber length of 1 to 750 μm. The amount of the carboxymethyl-group-containing cellulose ether or the salt thereof (B) is 0.1 to 3 parts by weight based on 100 parts by weight of the total amount of the cellulose fiber (A), the carboxymethyl-group-containing cellulose ether or the salt thereof (B), and the electrode active material (C), in terms of solid content. The present invention provides an electrode slurry that allows an improved surface smoothness (coating uniformity) of an electrode and an improved coating property, a process for producing the electrode slurry, an electrode, a process for producing the electrode, a non-aqueous secondary battery, and a lithium-ion secondary battery.
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1 . An electrode slurry comprising: (A) a cellulose fiber, (B) a carboxymethyl-group-containing cellulose ether or a salt thereof, and a particulate material containing at least (C) an electrode active material, the cellulose fiber (A) having an average fiber length of 1 to 750 μm. 2 . The electrode slurry according to claim 1 , wherein, in terms of solid content, an amount of the carboxymethyl-group-containing cellulose ether or the salt thereof (B) is 0.1 to 3 parts by weight based on 100 parts by weight of a total amount of the cellulose fiber (A), the carboxymethyl-group-containing cellulose ether or the salt thereof (B), and the electrode active material (C). 3 . The electrode slurry according to claim 1 , wherein, in terms of solid content, a total content of the cellulose fiber (A) and the carboxymethyl-group-containing cellulose ether or the salt thereof (B) is 1 to 4.5 parts by weight based on 100 parts by weight of a total amount of the cellulose fiber (A), the carboxymethyl-group-containing cellulose ether or the salt thereof (B), and the electrode active material (C). 4 . The electrode slurry according to claim 1 , wherein a ratio of the cellulose fiber (A) relative to the carboxymethyl-group-containing cellulose ether or the salt thereof (B) is 95/5 to 20/80 in the former/the latter (weight ratio) in terms of solid content. 5 . The electrode slurry according to claim 1 , wherein the average fiber length of the cellulose fiber (A) is 2 to 100 μm. 6 . The electrode slurry according to claim 1 , wherein the carboxymethyl-group-containing cellulose ether or the salt thereof (B) contains a carboxymethyl cellulose or a salt thereof. 7 . The electrode slurry according to claim 1 , wherein the electrode active material (C) is coated with the carboxymethyl-group-containing cellulose ether or the salt thereof (B). 8 . The electrode slurry according to claim 1 , wherein the electrode active material (C) contains at least one member selected from the group consisting of (C1) a carbonaceous particle and (C2) a silicon particle. 9 . The electrode slurry according to claim 1 , wherein a total content of the cellulose fiber (A), the carboxymethyl-group-containing cellulose ether or the salt thereof (B), and the particulate material containing at least the electrode active material (C) is not more than 60% by weight based on the whole slurry. 10 . A process for producing a slurry composition containing (A) a cellulose fiber, (B) a carboxymethyl-group-containing cellulose ether or a salt thereof, and a particulate material containing at least (C) an electrode active material, the process comprising: treating at least the electrode active material (C) with the carboxymethyl-group-containing cellulose ether or the salt thereof (B), and mixing the treated product and the cellulose fiber (A). 11 . The process according to claim 10 , wherein the particulate material further contains (D) a conductive auxiliary, wherein the electrode active material (C) and the conductive auxiliary (D) are treated with the carboxymethyl-group-containing cellulose ether or the salt thereof (B), and the treated product and the cellulose fiber (A) are mixed. 12 . The process according to claim 10 , wherein the electrode active material (C) contains at least one member selected from the group consisting of (C1) a carbonaceous particle and (C2) a silicon particle. 13 . The process according to claim 10 , which comprises: mixing (C) an electrode active material containing (C1) a carbonaceous particle and (C2) a silicon particle in a ratio of the former/the latter of 99/1 to 50/50 (weight ratio), (D) a conductive auxiliary, and (B) a carboxymethyl cellulose or a salt thereof to prepare an aqueous mixture, and mixing the aqueous mixture and (A) an aqueous dispersion containing a cellulose nanofiber having a nanometer-sized average fiber diameter to prepare a slurry composition, wherein in terms of solid content, an amount of the carboxymethyl cellulose or the salt thereof (B) based on 100 parts by weight of the electrode active material (C) is 0.1 to 4 parts by weight, and in terms of solid content, a ratio of the cellulose nanofiber (A) relative to the carboxymethyl cellulose or the salt thereof (B) is 95/5 to 5/95 in the former/the latter (weight ratio). 14 .- 16 . (canceled) 17 . A non-aqueous secondary battery provided with an electrode recited in claim 15 . 18 . (canceled)
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