IP Library Granted Patent US 11,316,145
Granted Patent B2
US 11,316,145 · App. 16/606,458 · Granted Apr 26, 2022

Method for forming lithium metal and inorganic material composite thin film and method for pre-lithiation of negative electrode for lithium secondary battery by using same

Inventors: Sang Wook Woo (Daejeon, KR); Eun Kyung Kim (Daejeon, KR); Yoon Ah Kang (Seoul, KR); Jun Hyuk Song (Daejeon, KR); Oh Byong Chae (Daejeon, KR)
Assignee: LG ENERGY SOLUTION, LTD.
H01M4/1391H01M4/049H01M4/0433H01M4/0435H01M4/0471H01M4/0483H01M4/131H01M4/485H01M10/0525H01M2004/027
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Quick Facts
Patent No.
US 11,316,145
App. No.
16/606,458
Granted
Apr 26, 2022
Kind
B2
Abstract

A method for pre-lithiation of a negative electrode and a negative electrode formed by the method, the method including forming a mixture of inorganic material powder and molten lithium, forming a lithium metal-inorganic material composite ribbon, rolling the ribbon into a film and bonding the lithium metal-inorganic material composite film on a surface of a negative electrode to form a lithium metal-inorganic material composite layer on the surface of the negative electrode. This method reduces the deterioration of lithium during application of a mixture slurry and a negative electrode for a secondary battery, manufactured by the method for pre-lithiation, has improved initial irreversibility, and a secondary battery manufactured using such a negative electrode has excellent charging and discharging efficiency.

Claims (13)

1. A method for pre-lithiating a negative electrode, the method comprising:

adding an inorganic powder to molten lithium to form a mixture;

extruding the mixture and cooling the mixture to prepare a lithium metal-inorganic composite ribbon having a thickness of 100 μm to 200 μm;

rolling the lithium metal-inorganic composite ribbon to produce a lithium metal-inorganic composite film; and

bonding the lithium metal-inorganic composite film on a surface of the negative electrode to form a lithium metal-inorganic composite layer on the surface of the negative electrode.

2. The method of claim 1 , wherein a thickness of the lithium metal-inorganic composite layer is 1 μm to 50 μm.

3. The method of claim 1 , wherein the inorganic powder comprises at least one selected from the group consisting of alumina (Al 2 O 3 ), titanium dioxide (TiO 2 ), zirconium dioxide (ZrO 2 ), silicon dioxide (SiO 2 ), tin oxide (SnO 2 ), cerium oxide (CeO 2 ), magnesium oxide (MgO), calcium oxide (CaO), and yttria (Y 2 O 3 ).

4. The method of claim 1 , wherein a mixing ratio of the molten lithium and the inorganic powder is 70 to 85% by volume of the molten lithium and 15 to 30% by volume of the inorganic powder.

5. The method of claim 1 , further comprising

mixing a binder with the molten lithium or the mixture of the molten lithium and inorganic powder.

6. The method of claim 1 , wherein the lithium metal-inorganic composite layer does not remain in a metallic form of lithium after an initial activation charge.

7. The method of claim 1 , wherein the inorganic powder has a particle diameter of 0.1 μm to 10 μm.

8. The method of claim 1 , wherein the negative electrode comprises silicon oxide.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: LG CHEM, LTD.
To: LG ENERGY SOLUTION, LTD.
Reel/Frame 058295/0068 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2019
From: WOO, SANG WOOK; KIM, EUN KYUNG; KANG, YOON AH; SONG, JUN HYUK; CHAE, OH BYONG
To: LG CHEM, LTD.
Reel/Frame 050790/0502 →
Priority Claims (2)
KR 10-2017-0101380 · Aug 10, 2017 · national
KR 10-2018-0087814 · Jul 27, 2018 · national
Continuity (1)
Related Publication 20200136128A1 · Apr 30, 2020
Cited By (5)
US 12,482,815 US 12,489,138 US 12,562,389 US 12,620,596 US 12,633,545