IP Library Patent Application 17659142
Patent Application
App. No. 17/659,142

RECHARGEABLE BATTERIES AND METHODS OF MAKING SAME

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 None
App. No.
17/659,142
Abstract

Systems and methods for rechargeable batteries are provided. In an embodiment, a battery may include a cathode, an anode, an electrolyte solution, and a current collector. The anode may include a 3D porous structure. The 3D porous structure may have a higher electrical conductivity at one end than at the other end, and lithium ions may be dispersed throughout the 3D porous structure.

Claims (42)

1 . An anode, comprising:

an electrically conductive first layer comprising:

a porous, three-dimensional structure having a first end and a second end;

particles comprising a subset of particles that are distributed at a higher concentration toward the first end than the second end such that an electrical conductivity gradient is formed between the first and second ends; and

a second layer comprising lithium metal, wherein the second layer is coupled to the first end of the first layer.

2 . The anode of claim 1 , wherein the second end is configured to couple with a separator and an electrolyte solution.

3 . The anode of claim 1 , wherein the first layer comprises a polymer.

4 . The anode of claim 1 , wherein the first layer comprises:

a polymer.

5 . The anode of claim 1 , wherein the particles comprise at least one of copper and nickel and are surface coated with at least one of tin, zinc, argon, bismuth, indium, gallium, aluminum, nitrogen, phosphorous, silicon, and germanium.

6 . The anode of claim 1 , wherein the particles are doped with at least one of:

tin, zinc, argon, bismuth, indium, gallium, aluminum, nitrogen, phosphorous, silicon, germanium.

7 . The anode of claim 1 , further comprising a metal current collector, wherein the current collector comprises at least one of copper, nickel, and stainless steel.

8 . The anode of claim 1 , further comprising a metal current collector, wherein the current collector comprises at least one of copper, nickel, and stainless steel.

9 . The anode of claim 1 , wherein the second layer comprises pure metallic lithium.

10 . The anode of claim 1 , wherein the first layer comprises a porosity between 60 percent and 90 percent.

11 . The anode of claim 1 , further comprising a third layer, the third layer being a metal current collector comprising at least one of copper, nickel and stainless steel, and wherein the third layer is coupled to the second layer.

12 . A battery, comprising:

an anode, comprising:

an electrically conductive first layer comprising:

a porous, three-dimensional structure having a first end and a second end;

particles comprising a subset of particles, said subset having a high electrical conductivity that are distributed at a higher concentration toward the first end than the second end; and

a second layer comprising lithium metal, wherein the second layer is coupled to the first end of the first layer.

13 . The battery of claim 12 , further comprising:

a cathode located in closer proximity to the second end than to the first end;

a separator; and

an electrolyte;

wherein the separator and electrolyte are located in between the cathode and the anode.

14 . The battery of claim 12 , wherein the first layer of the anode is electrically conductive and comprises a higher electrical conductivity toward the first end than the second end.

15 . The battery of claim 14 , wherein the first layer of the anode comprises a polymer.

16 . The battery of claim 14 , wherein the first layer of the anode comprises:

a polymer; and

particles comprising at least one of carbon and metal, wherein the particles comprise particles with high electronic conductivity that are distributed at a higher concentration toward the first end than at the second end.

17 . The battery of claim 16 , wherein the particles in the anode are carbon particles and are doped with at least one of:

tin, zinc, argon, bismuth, indium, gallium, aluminum, nitrogen, phosphorous, silicon, germanium.

18 . The battery of claim 16 , wherein the particles in the anode are metal particles and are surface coated with at least one of:

tin, zinc, argon, bismuth, indium, gallium, aluminum, nitrogen, phosphorous, silicon, germanium.

19 . The battery of claim 17 , further comprising a metal current collector coupled to the second layer of the anode, wherein the current collector comprises at least one of copper, nickel, and stainless steel.

20 . The battery of claim 16 , further comprising a third layer of metal current collector coupled to the second layer of the anode, wherein the current collector comprises at least one of copper, nickel, and stainless steel.

21 . The battery of claim 16 , wherein the second layer of the anode comprises pure metallic lithium.

22 . The battery of claim 16 , wherein the first layer of the anode comprises a porosity between 60 percent and 90 percent.

23 . The battery of claim 14 , wherein the anode is further comprised of a third layer, the third layer being a metal current collector coupled to the second layer, and wherein the current collector comprises at least one of copper, nickel, and stainless steel.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2025
From: LINOVA ENERGY LP
To: LINOVA ENERGY INC.
Reel/Frame 072498/0685 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2024
From: BETTERGY CORP.
To: LINOVA ENERGY LP
Reel/Frame 066623/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2022
From: LI, LIN-FENG; JIANG, TIANCHAN; LIU, CAIHONG; TANG, ZHONG; CHEN, MIN
To: BETTERGY CORP.
Reel/Frame 060222/0919 →