IP Library Patent Application 19006544
Patent Application
App. No. 19/006,544

METHOD AND SYSTEM FOR SILICON DOMINANT LITHIUM-ION CELLS WITH CONTROLLED LITHIATION OF SILICON

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Patent No.
US None
App. No.
19/006,544
Abstract

Systems and methods for silicon dominant lithium-ion cells with controlled lithiation of silicon may include a cathode, an electrolyte, and an anode. The anode may include silicon lithiated at a level after discharge that is configured to be above a minimum threshold level, where the minimum threshold lithiation is 3% silicon lithiation. The lithiation level of the silicon after charging the battery may range between 30% and 95% silicon lithiation, between 30% and 75% silicon lithiation, between 30% and 65% silicon lithiation, or between 30% and 50% silicon lithiation. The lithiation level of the silicon after discharging the battery may range between 3% and 50% silicon lithiation, between 3% and 30% silicon lithiation, or between 3% and 10% silicon lithiation. The minimum threshold level may be a lithiation level below which a cycle life of the battery degrades. The electrolyte may include a liquid, solid, or gel.

Claims (17)

1 - 13 . (canceled)

14 . A method of forming a battery, the method comprising:

forming a battery comprising an anode, a cathode, and an electrolyte, the anode comprising silicon:

charging the battery lithiating the anode; and

discharging the battery, wherein a lithiation level of the anode remains above a minimum threshold level after discharge, wherein the minimum threshold lithiation is 3% silicon lithiation.

15 . The method according to claim 14 , comprising configuring the silicon lithiation level after discharge by a discharge voltage of the anode.

16 . The method according to claim 14 , comprising ensuring the silicon lithiation level after discharge is above the minimum threshold level utilizing a prelithiation of the silicon.

17 . The method according to claim 14 , comprising configuring the silicon lithiation level after discharge by an irreversible discharge capacity of the cathode.

18 . The method according to claim 14 , wherein the lithiation level of the silicon after charging the battery ranges between 30% and 95% silicon lithiation.

19 . The method according to claim 14 , wherein the lithiation level of the silicon after charging the battery ranges between 30% and 75% silicon lithiation.

20 . The method according to claim 14 , wherein the lithiation level of the silicon after charging the battery ranges between 30% and 65% silicon lithiation.

21 . The method according to claim 14 , wherein the lithiation level of the silicon after charging the battery ranges between 30% and 50% silicon lithiation.

22 . The method according to claim 14 , wherein the lithiation level of the silicon after discharging the battery ranges between 3% and 50% silicon lithiation.

23 . The method according to claim 14 , wherein the lithiation level of the silicon after discharging the battery ranges between 3% and 30% silicon lithiation.

24 . The method according to claim 14 , wherein the lithiation level of the silicon after discharging the battery ranges between 3% and 10% silicon lithiation.

25 . The method according to claim 14 , wherein the minimum threshold level is a lithiation level below which a cycle life of the battery degrades.

26 . (canceled)

Assignments (1)
SECURITY INTEREST Recorded Mar 10, 2026
From: ENEVATE CORPORATION
To: MCANDREWS, HELD & MALLOY LTD.
Reel/Frame 075093/0935 →