IP Library Granted Patent US 10,862,100
Granted Patent B2
US 10,862,100 · App. 16/103,075 · Granted Dec 8, 2020

Reticulated electrode structure and method of making the same

Inventors: Alvin Snaper (Las Vegas, NV); Jonathan Jan (Culver City, CA)
H01M4/0404C23C18/1648C23C18/31C25D1/08C25D3/22C25D3/38C25D3/44C25D3/46C25D3/48C25D5/20C25D5/50C25D5/54H01M4/04H01M4/0452H01M4/0471H01M4/663H01M4/667H01M4/80H01M2004/021
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Quick Facts
Patent No.
US 10,862,100
App. No.
16/103,075
Granted
Dec 8, 2020
Kind
B2
Abstract

A method of forming an electrode in an electrochemical battery comprises: coating a reticulated substrate with a conductive material; curing the reticulated substrate coated with the conductive material; and electroplating the reticulated substrate coated with the conductive material with a desired metal material.

Claims (14)

1. A method of forming an electrode in an electrochemical battery comprising:

applying a conductive coating to a reticulated ceramic substrate, the reticulated ceramic substrate having a crystalline structure forming microscopic honeycomb structures having a plurality of interconnecting openings, wherein applying the conductive coating to the reticulated substrate comprises:

immersion dipping the reticulated ceramic substrate, wherein immersion dipping comprises immersing the reticulated substrate in an ultrasonic tank containing the conductive coating, wherein the conductive coating is a water-soluble conductive liquid; and

applying ultrasonic wave to break down a surface tension at the boundary layer of the reticulated ceramic substrate to allow the water-soluble conductive liquid to flow through the openings and permeate an interior of the honeycomb structures forming the reticulated ceramic substrate to increase a reactive surface area of the reticulated ceramic substrate and promote adhesion of the conductive material within the interior of the honeycomb structures forming the reticulated ceramic substrate; and

curing the reticulated ceramic substrate coated with the conductive material.

2. The method of claim 1 , generating signals in the ultrasonic tank having an ultrasonic frequency in a range of 28-48 kHz.

3. The method of claim 1 , wherein the conductive liquid is a water-soluble conductive ink having conductive carbon materials.

4. The method of claim 1 , wherein the conductive liquid is a water-soluble conductive ink having conductive carbon materials, wherein the conductive carbon materials are a combination of graphene and graphite.

5. The method of claim 4 , wherein the graphene is approximately 2-25 micron in linear dimensions.

6. A method of forming an electrode in an electrochemical battery comprising:

applying a conductive coating to a reticulated ceramic substrate having a honeycomb structure, wherein applying the conductive coating to the reticulated ceramic substrate comprises:

immersion dipping the reticulated ceramic substrate in an ultrasonic tank containing the conductive coating, wherein the conductive coating is a water-soluble conductive ink having conductive carbon materials; and

applying ultrasonic wave to break down a surface tension at the boundary layer of the reticulated ceramic substrate to allow the water-soluble conductive ink to flow through the honeycomb structure and permeate an interior of the reticulated ceramic substrate, the conductive carbon material adhering to the interior of the reticulated ceramic substrate to increase a reactive surface area of the reticulated ceramic substrate.

7. The method of claim 6 , comprising curing the reticulated ceramic substrate coated with the conductive carbon materials.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2024
From: SNAPER, KATHLEEN M.
To: KATHLEEN M. SNAPER, TRUSTEE OF THE SNAPER FAMILY TRUST, DATED MAY 19, 2022
Reel/Frame 066065/0466 →
COURT ORDER Recorded Nov 9, 2023
From: SNAPER, ALVIN A
To: SNAPER, KATHLEEN M
Reel/Frame 065530/0778 →
Continuity (2)
Continuation 15197561 · Jun 29, 2016
Related Publication 20180358607A1 · Dec 13, 2018