IP Library Granted Patent US 11,649,358
Granted Patent B2
US 11,649,358 · App. 16/567,647 · Granted May 16, 2023

Borate salts, polymers and composites

Inventors: Chen Liao (Westmont, IL); Trevor L. Dzwiniel (Carol Stream, IL); Kewel Liu (Aurora, IL)
Assignee: UCHICAGO ARGONNE, LLC
C08L85/04C07F5/04C08G79/08C08K5/37H01M4/622H01M10/0525H01M10/0565H01M2300/0091
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 11,649,358
App. No.
16/567,647
Granted
May 16, 2023
Kind
B2
Abstract

Described herein are borate salts useful as additives, binders, and electrolyte salts for solid state lithium ion batteries. In particular, the borate salts of Formula (I), Formula (II) and Formula (III) as described herein: can be polymerized, or can be bound to an existing polymer, to provide polymeric binders for ceramic solid state electrolytes that are themselves capable of ion transport independent of the ceramic.

Claims (18)

1. A single-ion conducting polymer-ceramic composite comprising particles of a lithium ion conducting ceramic in matrix of a single-ion conducting polymer; wherein the single-ion conducting polymer is formed by polymerization of a bis(2-allyl-2-fluoromalonato)borate salt in the presence of a cross-linking co-monomer comprising trimethylolpropane tris(3-mercaptopropionate) initiated by exposing the precursor mixture to ultraviolet light.

2. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the polymerization is conducted in the presence of 4-dimethylaminopyridine.

3. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the polymerization is conducted in the presence of the particles of the lithium ion conducting ceramic.

4. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the lithium ion conducting ceramic comprises at least one material selected from the group consisting of a metal oxide, a metal phosphate, a metal sulfide, and a metal oxide-sulfide.

5. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the lithium ion conducting ceramic comprises a lithium-lanthanum-zirconium oxide material.

6. The single-ion conducting polymer-ceramic composite of claim 5 , wherein the lithium-lanthanum-zirconium oxide material is Li 7 La 3 Zr 2 O 12 .

7. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the lithium ion conducting ceramic comprises LiTi 2 (PO 4 ) 3 .

8. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the lithium ion conducting ceramic comprises at least one metal sulfide selected from the group consisting of Li 3 PS 4 , Li 4 GePS 4 , Li 11 P 2 GeS 12 , Li 9.6 P 3 S 12 , Li 10 GeP 2 S 12 , Li 10.35 Ge 1.35 P 1.65 S 12 , and Li 9.81 Sn 0.81 P 2.19 S 12 .

9. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the lithium ion conducting ceramic comprises at least one metal oxide-sulfide selected from the group consisting of Li 9 P 3 S 903 and Li 9.42 Si 1.03 P 2.1 S 9.96 O 2.04 .

10. The single-ion conducting polymer-ceramic composite of claim 1 , wherein the bis(2-allyl-2-fluoromalonato)borate salt is lithium bis(2-allyl-2-fluoromalonato)borate.

11. A single-ion conducting polymer-ceramic composite comprising particles of a lithium ion conducting ceramic in matrix of a single-ion conducting polymer; wherein the single-ion conducting polymer is formed by ultraviolet light initiated polymerization of lithium bis(2-allyl-2-fluoromalonato)borate in the presence of trimethylolpropane tris(3-mercaptopropionate) and 4-dimethylaminopyridine.

12. The single-ion conducting polymer-ceramic composite of claim 11 , wherein the polymerization is conducted in the presence of the particles of the lithium ion conducting ceramic.

13. The single-ion conducting polymer-ceramic composite of claim 11 , wherein the lithium ion conducting ceramic comprises at least one material selected from the group consisting of a metal oxide, a metal phosphate, a metal sulfide, and a metal oxide-sulfide.

14. The single-ion conducting polymer-ceramic composite of claim 11 , wherein the lithium ion conducting ceramic comprises a lithium-lanthanum-zirconium oxide material.

15. The single-ion conducting polymer-ceramic composite of claim 14 , wherein the lithium-lanthanum-zirconium oxide material is Li 7 La 3 Zr 2 O 12 .

16. The single-ion conducting polymer-ceramic composite of claim 11 , wherein the lithium ion conducting ceramic comprises LiTi 2 (PO 4 ) 3 .

17. The single-ion conducting polymer-ceramic composite of claim 11 , wherein the lithium ion conducting ceramic comprises at least one metal sulfide selected from the group consisting of Li 3 PS 4 , Li 4 GePS 4 , Li 11 P 2 GeS 12 , Li 9.6 P 3 Su, Li 10 GeP 2 S 12 , Li 10.35 Ge 1.35 P 1.65 S 12 , and Li 9.81 Sn 0.81 P 2.19 S 12 .

18. The single-ion conducting polymer-ceramic composite of claim 11 , wherein the lithium ion conducting ceramic comprises at least one metal oxide-sulfide selected from the group consisting of Li 9 P 3 S 9 O 3 and Li 9.42 Si 1.03 P 2.1 S 9.9602.04 .

Assignments (2)
CONFIRMATORY LICENSE Recorded Dec 19, 2019
From: UCHICAGO ARGONNE, LLC
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 051333/0492 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2019
From: LIAO, CHEN; DZWINIEL, TREVOR L.; LIU, KEWEL
To: UCHICAGO ARGONNE, LLC
Reel/Frame 050934/0411 →
Continuity (1)
Related Publication 20210071000A1 · Mar 11, 2021