Silicon-based powder, electrode and battery comprising such a powder

US12567582B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12567582-B2
Application numberUS-201916967248-A
CountryUS
Kind codeB2
Filing dateFeb 5, 2019
Priority dateFeb 7, 2018
Publication dateMar 3, 2026
Grant dateMar 3, 2026

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A silicon-based powder for use in the negative electrode of a battery comprises silicon-based particles. The silicon-based particles have a number-based particle size distribution having a d50, and less than 8.0% of the particles have a size which is larger than twice the d50. The silicon-based powder may be embedded in a matrix to form an active material powder. Preferably d50<150 nm and d10>10 nm. The cycle efficiency of a negative electrode of a battery, made using such a powder, is much improved.

First claim

Opening claim text (preview).

The invention claimed is: 1 . A silicon-based powder for use in a negative electrode of a battery, the silicon-based powder comprising silicon-based particles, wherein the silicon-based particles have a number-based particle size distribution having a d50, wherein a particle size of a particle is considered to be a largest linear dimension of said particle, wherein less than 8.0% of a total number of silicon-based particles have a particle size that is larger than twice the d50, and wherein the silicon-based powder has an oxygen content of 1.5 wt % or more and 8.0 wt % or less. 2 . The silicon-based powder according to claim 1 , wherein the largest linear dimension of a particle is measured as the largest straight-line distance between two points on a periphery of the particle when embedded in resin as observed by electron microscopy of an embedded particle, wherein said oxygen content of the powder is determined by reducing the silicon-based powder with graphite and measuring an amount of CO and CO 2 that is produced as a consequence of this reduction, wherein the number-based particle size distribution is determined based on the particle sizes of at least 500 particles, wherein the number-based particle size distribution has a d10, wherein d10 represents that 10% of the total number of particles have a size equal to or smaller than d10, wherein the number-based particle size distribution has a d50, wherein d50 represents that 50% of the total number of particles have a size equal to or smaller than d50, and wherein the number-based particle size distribution has a d99, wherein d99 represents that 99% of the total number of particles have a size equal to or smaller than d99. 3 . The silicon-based powder according to claim 1 , wherein less than 4.0% of the total number of silicon-based particles has a particle size that is larger than twice the d50. 4 . The silicon-based powder according to claim 1 , wherein the silicon based powder has an oxygen content of 2.5 wt % or more. 5 . The silicon based powder according to claim 1 , wherein the silicon based powder has an oxygen content of 1.5 wt % or more and 6.1 wt % or less. 6 . The silicon based powder according to claim 1 , wherein the particle size distribution of the silicon-based particles has a d99, wherein (d99−d50)/d50≤2. 7 . The silicon-based powder according to claim 1 , wherein the silicon-based particles have a chemical composition having at least 70% by weight of silicon. 8 . The silicon-based powder according to claim 1 , wherein d50<150 nm. 9 . The silicon-based powder according to claim 1 , wherein the particle size distribution has a d10, wherein d10>10 nm. 10 . An active material powder for use in a negative electrode of a battery, wherein the active material powder comprises active material particles, wherein the active material particles comprise a matrix material and a silicon-based powder according to claim 1 , wherein the silicon-based powder is embedded in the matrix material. 11 . The active material powder according to claim 10 , wherein the active material powder comprises at least 20 wt % of said silicon-based powder. 12 . The active material powder according to claim 11 , wherein the active material powder comprises at most 75 wt % of said silicon-based powder. 13 . The active material powder according to claim 10 , wherein the active material powder comprises at least 90% by weight of said active material particles. 14 . A negative electrode for a battery, wherein the negative electrode comprises the silicon-based powder of claim 1 . 15 . A battery comprising the silicon-based powder of claim 1 .

Assignees

Inventors

Classifications

  • Negative electrodes · CPC title

  • Physical characteristics, e.g. porosity, surface area · CPC title

  • Rocking-chair batteries, i.e. batteries with lithium insertion or intercalation in both electrodes; Lithium-ion batteries · CPC title

  • Carbon or graphite · CPC title

  • H01M4/134Primary

    Electrodes based on metals, Si or alloys · CPC title

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What does patent US12567582B2 cover?
A silicon-based powder for use in the negative electrode of a battery comprises silicon-based particles. The silicon-based particles have a number-based particle size distribution having a d50, and less than 8.0% of the particles have a size which is larger than twice the d50. The silicon-based powder may be embedded in a matrix to form an active material powder. Preferably d50<150 nm and d10>1…
Who is the assignee on this patent?
Umicore Nv
What technology area does this patent fall under?
Primary CPC classification H01M4/134. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Mar 03 2026 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).