Positive electrode active material and preparation method thereof, positive electrode plate, secondary battery, battery module, battery pack, and electric apparatus
US-2024429384-A1 · Dec 26, 2024 · US
US2023420670A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2023420670-A1 |
| Application number | US-202218275522-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 1, 2022 |
| Priority date | Feb 26, 2021 |
| Publication date | Dec 28, 2023 |
| Grant date | — |
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An electrode mixture for a battery according to an embodiment of the present invention comprises an active material capable of intercalation and deintercalation of lithium, and an ionic compound bonded to the surface of the active material. The ionic compound contains a binding site to the active material, an organic cation, and a counter anion for the organic cation. The binding site is derived from, for example, a hydrolyzable silyl group. In addition, the content of the suitable ionic compound is, for example, 0.2-1.8 mass % with respect to the mass of the active material.
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1 . An electrode mixture for a battery, including an active material that is able to occlude and release lithium, wherein the electrode mixture further includes an ionic compound bonded to a surface of the active material, and wherein the ionic compound contains a bonding moiety to the active material, an organic cation, and a counter anion to the organic cation. 2 . The electrode mixture according to claim 1 , wherein a content of the ionic compound is greater than or equal to 0.2 mass % and less than or equal to 1.8 mass % relative to the mass of the active material. 3 . The electrode mixture according to claim 1 , wherein the organic cation includes at least one selected from the group consisting of an ammonium cation, an imidazolium cation, a piperidinium cation, a pyridinium cation, a pyrrolidinium cation, a morpholinium cation, a sulfonium cation, and a phosphonium cation. 4 . The electrode mixture according to claim 1 , wherein the counter anion includes at least one selected from the group consisting of PF 6 − , BF 4 − , N(SO 2 CF 3 ) 2 − , N(SO 2 F) 2 − , PO 2 F 2 − , a bisoxalateborate anion, and a difluorooxalateborate anion. 5 . The electrode mixture according to claim 1 , wherein the bonding moiety is derived from a hydrolysable silyl group. 6 . The electrode mixture according to claim 1 , wherein a content of silicon is greater than or equal to 0.03 mass % and less than or equal to 0.25 mass % relative to the total mass of the active material and the ionic compound. 7 . The electrode mixture according to claim 1 , wherein the active material includes a lithium-containing transition metal composite oxide. 8 . The electrode mixture according to claim 7 , wherein the lithium-containing transition metal composite oxide has a layered rock-salt crystal structure, and includes a composite oxide represented by the general formula: LiNi x M 1-x O 2 , wherein M represents at least one selected from the group consisting of Al, Mn, and Co, and 0.3≤x<1.0. 9 . A non-aqueous electrolyte secondary battery, comprising: a positive electrode; a negative electrode; and a non-aqueous electrolyte, wherein at least one of mixture layers of the positive electrode and the negative electrode is constituted with the electrode mixture according to claim 1 .
Selection of inactive substances as ingredients for active masses, e.g. binders, fillers · CPC title
of mixed oxides or hydroxides containing iron, cobalt or nickel for inserting or intercalating light metals, e.g. LiNiO2, LiCoO2 or LiCoOxFy · CPC title
of mixed oxides or hydroxides containing manganese for inserting or intercalating light metals, e.g. LiMn2O4 or LiMn2OxFy · CPC title
Non-aqueous electrolytes · CPC title
Energy storage using batteries · CPC title
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