Battery and usage method for same, and battery system
US-2024356025-A1 · Oct 24, 2024 · US
US2019296342A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019296342-A1 |
| Application number | US-201816117941-A |
| Country | US |
| Kind code | A1 |
| Filing date | Aug 30, 2018 |
| Priority date | Mar 23, 2018 |
| Publication date | Sep 26, 2019 |
| Grant date | — |
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According to one embodiment, an electrode is provided. The electrode includes an active material-containing layer which contains an active material. The active material includes a plurality of primary particles containing a niobium-titanium composite oxide. The average crystallite diameter of the plurality of primary particles is 90 nm or more. The average particle size (D50) of the plurality of primary particles is in a range of 0.1 μm to 5 μm. The average value (FU ave ) of the roughness shape coefficient (FU) according to Formula (1) below is less than 0.70 in 100 primary particles among the plurality of primary particles. [ Formula 1 ] FU = f f c = 4 π a 2 ( 1 )
Opening claim text (preview).
1 . An electrode comprising an active material-containing layer which comprises an active material, wherein the active material comprises a plurality of primary particles comprising a niobium-titanium composite oxide, an average crystallite diameter of the plurality of primary particles is 90 nm or more, an average particle size (D50) of the plurality of primary particles is in a range of 0.1 μm to 5 μm, which is based on a particle size distribution chart according to a laser diffraction scattering method, an average value (FU ave ) of a roughness shape coefficient (FU) according to Formula (1) below is less than 0.70 in 100 primary particles among the plurality of primary particles, and each of the 100 primary particles has a particle size of 0.2 times to 4 times the average particle size (D50), [ Formula 1 ] FU = f f c = 4 π a 2 ( 1 ) where l represents an outer circumference length of a projected cross-section of each of the 100 primary particles, and a represents a cross-sectional area in the projected cross-section of each of the 100 primary particles. 2 . The electrode according to claim 1 , wherein the average particle size (D50) is in a range of 0.5 μm to 3.0 μm. 3 . The electrode according to claim 1 , wherein a content of the niobium-titanium composite oxide comprised in the active material is in a range of 75% by weight to 100% by weight. 4 . The electrode according to claim 1 , wherein an electrode density is in a range of 2.20 g/cm 3 to 2.70 g/cm 3 . 5 . A secondary battery comprising: a positive electrode; a negative electrode; and an electrolyte, wherein the negative electrode is the electrode according to claim 1 . 6 . A battery pack comprising the secondary battery according to claim 5 . 7 . The battery pack according to claim 6 , further comprising: an external power distribution terminal; and a protective circuit. 8 . The battery pack according to claim 6 , comprising plural of the secondary battery, wherein the secondary batteries are electrically connected in series, in parallel, or in a combination of in series and in parallel. 9 . A vehicle comprising the battery pack according to claim 6 . 10 . The vehicle according to claim 9 , which comprises a mechanism configured to convert kinetic energy of the vehicle into regenerative energy.
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