IP Library Granted Patent US 11,005,101
Granted Patent B2
US 11,005,101 · App. 15/958,181 · Granted May 11, 2021

Block graft copolymer binders and their use in silicon-containing anodes of lithium-ion batteries

Inventors: Tomonori Saito (Knoxville, TN); Pengfei Cao (Knoxville, TN); Jagjit Nanda (Knoxville, TN); Michael Naguib Abdelmalak (Metairie, LA)
Assignee: UT-Battelle, LLC
H01M4/622C08B37/003C08F251/00C08F293/005C08L5/08C08L33/02H01M10/0525C08F2438/03C08L2203/20H01M2004/027
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,005,101
App. No.
15/958,181
Granted
May 11, 2021
Kind
B2
Abstract

A graft copolymer composition comprising the following structure: wherein: A x represents a polymer backbone having a number of polymerized monomer units x; [B y ] represents a multiplicity of a graft polymer side chain having a number of polymerized monomer units y, and at least a portion of the monomer units in B y contains a group —C(O)OM, with M independently selected from H and alkali metals; [C] represents a multiplicity of positions on the polymer backbone A x where the graft polymer side chain B or any other graft polymer side chain is not attached; the subscript w represents a grafting density of the group B y , wherein w is an integer within a range of 10-50%; and the subscript z represents a density of the group C, wherein z=(100−w) %. The invention is also directed to lithium-ion batteries in which the above-described composition is incorporated in an anode of the battery.

Claims (35)

1. A graft copolymer composition comprising the following structure:

wherein:

A x represents a polymer backbone having a number of polymerized monomer units x, wherein x is at least 20;

[B y ] represents a multiplicity of a graft polymer side chain having a number of polymerized monomer units y, wherein y is an integer of at least 10, and at least a portion of the monomer units in B y contains a group —C(O)OM, wherein M is independently selected in each occurrence from H and alkali metals;

[C] represents a multiplicity of functional groups on the polymer backbone A x selected from the group consisting of hydroxy, carboxylic acid, carboxylate, carboxylic acid ester, amino groups, and precursors of any of the foregoing functional groups, and wherein the graft polymer side chain B or any other graft polymer side chain is not attached to said functional groups;

the subscript w represents a grafting density of the group B y , wherein w is an integer within a range of 10-50%; and

the subscript z represents a density of the group C, wherein z=(100−w) %.

2. The graft copolymer composition of claim 1 , wherein w is an integer within a range of 10-30%.

3. The graft copolymer composition of claim 1 , wherein y is an integer within a range of 10-500.

4. The graft copolymer composition of claim 1 , wherein w is an integer within a range of 10-30%, and y is an integer within a range of 10-500.

5. The graft copolymer composition of claim 1 , wherein at least 10% of M is alkali metal.

6. The graft copolymer composition of claim 1 , wherein A x represents chitosan.

7. The graft copolymer composition of claim 6 , wherein w is an integer within a range of 10-30%.

8. The graft copolymer composition of claim 6 , wherein y is an integer within a range of 10-500.

9. The graft copolymer composition of claim 6 , wherein w is an integer within a range of 10-30%, and y is an integer within a range of 10-100.

10. A lithium-ion battery comprising:

(a) an anode comprising silicon nanoparticles and a graft copolymer composition comprising the following structure:

wherein:

A x represents a polymer backbone having a number of polymerized monomer units x, wherein x is at least 20;

[B y ] represents a multiplicity of a graft polymer side chain having a number of polymerized monomer units y, wherein y is an integer of at least 10, and at least a portion of the monomer units in B y contains a group —C(O)OM, wherein M is independently selected in each occurrence from H and alkali metals;

[C] represents a multiplicity of functional groups on the polymer backbone A x selected from the group consisting of hydroxy, carboxylic acid, carboxylate, carboxylic acid ester, amino groups, and precursors of any of the foregoing functional groups, and wherein the graft polymer side chain B or any other graft polymer side chain is not attached to said functional groups;

the subscript w represents a grafting density of the group B y , wherein w is an integer within a range of 10-50%; and

the subscript z represents a density of the group C, wherein z=(100−w) %;

(b) a cathode; and

(c) a lithium-containing electrolyte medium in contact with said anode and cathode.

11. The lithium-ion battery of claim 10 , wherein said anode further comprises graphite.

12. The lithium-ion battery of claim 10 , wherein said cathode is selected from lithium metal and lithium-intercalated materials.

13. The lithium-ion battery of claim 10 , wherein w is an integer within a range of 10-30%.

14. The lithium-ion battery of claim 10 , wherein y is an integer within a range of 10-500.

15. The lithium-ion battery of claim 10 , wherein w is an integer within a range of 10-30%, and y is an integer within a range of 10-100.

16. The lithium-ion battery of claim 10 , wherein at least 10% of M is alkali metal.

17. The lithium-ion battery of claim 10 , wherein A x represents chitosan.

18. The lithium-ion battery of claim 17 , wherein w is an integer within a range of 10-30%.

19. The lithium-ion battery of claim 17 , wherein y is an integer within a range of 10-500.

20. The lithium-ion battery of claim 17 , wherein w is an integer within a range of 10-30%, and y is an integer within a range of 10-500.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2021
From: SAITO, TOMONORI; CAO, PENGFEI; NANDA, JAGJIT; ABDELMALAK, MICHAEL NAGUIB
To: UT-BATTELLE, LLC
Reel/Frame 055477/0419 →
CONFIRMATORY LICENSE Recorded Jul 18, 2018
From: UT-BATTELLE, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 046379/0383 →
Continuity (2)
Provisional Application 62619364 · Jan 19, 2018
Related Publication 20190229337A1 · Jul 25, 2019