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
US2016164099A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016164099-A1 |
| Application number | US-201414908318-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 29, 2014 |
| Priority date | Jul 29, 2013 |
| Publication date | Jun 9, 2016 |
| Grant date | — |
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An anode for use in a lithium-ion battery consists of a polymeric gel binder made of at least two polymers having carboxylic acid groups and silicon particles. The polymers are chemically cross-linked to form a polymer network, and covalent ester bonds are formed between the polymer network and the silicon particles.
Opening claim text (preview).
We claim: 1 . An anode for use in a lithium-ion battery comprising: a polymeric gel binder comprising at least two polymers having carboxylic groups, wherein said at least two polymers are chemically cross-linked to form a polymer network, and silicon, wherein covalent ester bonds are formed between said silicon particles and said polymer network. 2 . The anode of claim 1 wherein the at least two polymers are selected from the group consisting of cross-linked polymers, oligomers, composites of polymers, and composites of oligomers. 3 . The anode of claim 1 , wherein the polymeric gel binder comprises poly(acrylic acid) and poly(vinyl alcohol). 4 . The anode of claim 1 wherein the polymeric gel binder comprises at least two compounds selected from the group consisting of poly(acrylic acid) (PAA), poly(vinyl alcohol) (PVA), citric acid, and glycerol, and combinations thereof. 5 . The anode of claim 3 wherein the mass ratio of PVA to PAA is 1:9. 6 . The anode of claim 1 wherein the gel binder comprises citric acid and glycerol. 7 . The anode of claim 1 wherein the gel binder comprises PAA and citric acid and glycerol. 8 . The anode of claim 1 wherein the silicon particles have a mean diameter of about 0.1 nm to about 1000 μm. 9 . The anode of claim 7 wherein the silicon particles have a mean diameter of about 2 nm to about 100 μm. 10 . The anode of claim 8 wherein the silicon particles have a mean diameter of about 50 nm. 11 . The anode of claim 1 , further comprising conductive carbon. 12 . A lithium-ion battery comprising an anode of claim 1 . 13 . An anode for use in a lithium-ion battery comprising 30 to 50 weight percent silicon particles, wherein said silicon particles have a mean diameter of about 50 nm, 30 to 50 weight percent carbon black, and 10 to 30 weight percent PAA and PVA aqueous solution, wherein said PAA and PVA aqueous solution has a weight ratio of 9:1. 14 . An anode for use in a lithium-ion battery comprising silicon particles, carbon black, and water-soluble citric acid-glycerol binder, wherein said water-soluble citric acid-glycerol binder has a mass ratio of citric acid to glycerol of 1:1.
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