IP Library Granted Patent US 10,777,808
Granted Patent B2
US 10,777,808 · App. 15/419,454 · Granted Sep 15, 2020

Exfoliated graphite worm-protected metal fluoride and metal chloride cathode active materials for lithium batteries

Inventors: Aruna Zhamu (Springboro, OH); Bor Z. Jang (Centerville, OH)
Assignee: Global Graphene Group, Inc.
H01M4/366H01M4/133H01M4/136H01M4/1397H01M4/582H01M4/625H01M4/663H01M10/0525H01M2004/028
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 10,777,808
App. No.
15/419,454
Granted
Sep 15, 2020
Kind
B2
Abstract

A lithium battery cathode layer containing multiple particles or coating of a cathode active material (metal fluoride or metal chloride) and a layer of exfoliated graphite worms composed of interconnected graphite flakes and inter-flake pores, wherein (a) the graphite worms are selected from exfoliated natural graphite, exfoliated artificial graphite, exfoliated meso carbon micro-beads, exfoliated coke, exfoliated meso-phase pitch, exfoliated carbon or graphite fiber, or a combination thereof; (b) the cathode active material particles or coating has a size from 0.4 nm to 10 μm, and is in an amount from 1% to 99% by weight based on the total weight of graphite worms and the cathode active material combined; and (c) some of the pores are lodged with particles or coating of the cathode active material.

Claims (35)

1. A cathode or positive electrode layer for a lithium battery, said cathode layer comprising multiple particles or coating of a cathode active material and a layer of exfoliated graphite worms composed of interconnected graphite flakes and inter-flake pores having a pore size from 1 nm to 100 μm, wherein

a. said exfoliated graphite worms contain a worm-like accordion structure selected from exfoliated meso carbon micro-beads (MCMBs), exfoliated meso-phase pitch, and combinations thereof;

b. said cathode active material particles or coating is selected from a metal fluoride or metal chloride, has a size from 0.4 nm to 10 μm, and is in an amount from 1% to 99% by weight based on the total weight of said exfoliated graphite worms and said cathode active material combined; and

c. some of said inter-flake pores are lodged with said cathode active material particles or coating, wherein said cathode layer is in a continuous-length filamentary form having a thickness or diameter from 1 μm to 10 cm.

2. The cathode layer of claim 1 , wherein said exfoliated graphite worms, when measured without said cathode active material, have a density from 0.01 to 1.7 g/cm 3 , a specific surface area from 5 to 1,000 m 2 /g, a thermal conductivity of at least 10 W/mK, or an electrical conductivity no less than 100 S/cm.

3. The cathode layer of claim 1 , wherein said metal fluoride or metal chloride is selected from the group consisting of CoF 3 , MnF 3 , FeF 3 , VF 3 , VOF 3 , TiF 3 , BiF 3 , NiF 2 , FeF 2 , CuF 2 , CuF, SnF 2 , AgF, CuCl 2 , FeCl 3 , MnCl 2 , and combinations thereof.

4. The cathode layer of claim 1 , wherein said cathode active material particles or coating has a dimension smaller than 100 nm.

5. The cathode layer of claim 1 , wherein said cathode active material particles or coating has a dimension smaller than 10 nm.

6. The cathode layer of claim 1 , wherein said cathode active material particles contain transition metal fluoride or chloride particles in a nanowire, nano-tube, nano-disc, nano-ribbon, nano-belt, or nano platelet form having a diameter or thickness smaller than 100 nm.

7. The cathode layer of claim 1 , further comprising a carbon or graphite material therein, wherein said carbon or graphite material is in electronic contact with or deposited on said cathode active material.

8. The cathode layer of claim 7 , wherein said carbon or graphite material is selected from polymeric carbon, amorphous carbon, chemical vapor deposition carbon, coal tar pitch, petroleum pitch, meso-phase pitch, carbon black, coke, acetylene black, activated carbon, fine expanded graphite particle with a dimension smaller than 100 nm, artificial graphite particle, natural graphite particle, and combinations thereof.

9. The cathode layer of claim 1 , further comprising a conductive protective coating, selected from a carbon material, electronically conductive polymer, conductive metal oxide, conductive metal coating, or a lithium-conducting material, which is deposited onto or wrapped around said cathode active material particles.

10. The cathode layer of claim 1 , wherein said exfoliated graphite worms have a density from 0.5 to 1.7 g/cm 3 or said inter-flake pores have a pore size from 2 nm to 100 nm.

11. The cathode layer of claim 1 , wherein said exfoliated graphite worms have a specific surface area from 10 to 200 m 2 /g or a density from 0.1 to 1.5 g/cm 3 , when measured without the presence of a cathode active material.

12. The cathode layer of claim 1 , wherein said exfoliated graphite worms contain a non-carbon element selected from oxygen, fluorine, chlorine, bromine, iodine, nitrogen, hydrogen, or boron.

13. The cathode layer of claim 1 , which is in a continuous-length roll sheet form having a thickness from 1 μm to 10 cm and a length of at least 2 meters and is produced by a roll-to-roll process.

14. A lithium battery containing the cathode layer as defined in claim 1 , an anode or negative electrode, and an electrolyte in ionic contact with said anode and said cathode.

15. The lithium battery of claim 14 , further containing an anode current collector in electronic contact with said anode.

16. The lithium battery of claim 14 , further containing a cathode current collector in electronic contact with said cathode.

17. The lithium battery of claim 14 , wherein said layer of exfoliated graphite worms operates as a cathode current collector to collect electrons from said cathode active material during a discharge of said lithium battery, which contains no separate or additional cathode current collector.

18. The lithium battery of claim 17 , which is a lithium-ion battery or lithium metal battery.

19. A process for producing the cathode layer of claim 1 , said process comprising:

(a) mixing metal fluoride or metal chloride particles in a graphite worm-liquid suspension to form a multiple-component slurry;

(b) dispensing the slurry into a wet layer using a casting, extruding, coating, or spraying procedure; and

(c) compressing and drying the wet layer into a dried and consolidated layer, wherein the metal fluoride or chloride particles naturally reside in pores of the consolidated graphite worms.

20. A process for producing the cathode layer of claim 1 , said process comprising:

(a) impregnating metal fluoride or chloride particles or coating into pores of a layer of graphite worms to form a pre-impregnated graphite worm layer; and

(b) compressing and consolidating the pre-impregnated graphite worm layer into a cathode layer, wherein the metal fluoride or chloride particles or coating naturally reside in pores of the graphite worm layer.

21. A process for producing the cathode layer of claim 1 , said process comprising:

(a) impregnating a precursor to metal fluoride or chloride into pores of a layer of graphite worms; and

(b) chemically or thermally converting the precursor into particles or coating of metal fluoride or chloride, which resides in pores of the graphite worms or bonded to pore-wall surfaces of interconnected graphite flakes in said graphite worms.

22. A cathode or positive electrode layer for a lithium battery, said cathode layer comprising multiple particles or coating of a cathode active material and a layer of exfoliated graphite worms composed of interconnected graphite flakes and inter-flake pores having a pore size from 1 nm to 100 μm, wherein

a. said exfoliated graphite worms contain a worm-like accordion structure selected from exfoliated natural graphite, exfoliated artificial graphite, exfoliated meso carbon micro-beads (MCMBs), exfoliated coke, exfoliated meso-phase pitch, exfoliated carbon or graphite fiber, and combinations thereof;

b. said cathode active material particles or coating is selected from a metal fluoride or metal chloride, has a size from 0.4 nm to 10 μm, and is in an amount from 1% to 99% by weight based on the total weight of said exfoliated graphite worms and said cathode active material combined; and

c. some of said inter-flake pores are lodged with said cathode active material particles or coating wherein said cathode layer is in a continuous-length filamentary form having a thickness or diameter from 1 μm to 10 cm and a length of at least 2 meters.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2024
From: GLOBAL GRAPHENE GROUP, INC.
To: HONEYCOMB BATTERY COMPANY
Reel/Frame 066957/0745 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2019
From: NANOTEK INSTRUMENTS, INC.
To: GLOBAL GRAPHENE GROUP, INC.
Reel/Frame 049784/0650 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2017
From: JANG, BOR Z
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041289/0102 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2017
From: ZHAMU, ARUNA
To: NANOTEK INSTRUMENTS, INC.
Reel/Frame 041289/0627 →