IP Library Granted Patent US 11,276,885
Granted Patent B2
US 11,276,885 · App. 16/247,365 · Granted Mar 15, 2022

Thin film-based energy storage devices

Inventors: Vera N. Lockett (Phoenix, AZ); Yasser Salah (Tempe, AZ); Alexandra Elyse Hartman (Tolleson, AZ); Sri Harsha Kolli (Tempe, AZ); Rodger Whitby (Hoya, AU); William Johnstone Ray (Fountain Hills, AZ); Leila Daneshi (Phoenix, AZ)
Assignee: Printed Energy Pty Ltd
H01M10/0585H01G11/26H01M10/04H01M2220/30
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Quick Facts
Patent No.
US 11,276,885
App. No.
16/247,365
Granted
Mar 15, 2022
Kind
B2
Abstract

The disclosed technology generally relates to thin film-based energy storage devices, and more particularly to printed thin film-based energy storage devices. The thin film-based energy storage device includes a first current collector layer and a second current collector layer over an electrically insulating substrate and adjacently disposed in a lateral direction. The thin film-based energy storage device additionally includes a first electrode layer of a first type over the first current collector layer and a second electrode layer of a second type over the second current collector layer. A separator separates the first electrode layer and the second electrode layer. One or more of the first current collector layer, the first electrode layer, the separator, the second electrode layer and the second current collector layer are printed layers.

Claims (30)

1. An energy storage device comprising:

a first current collector layer and a second current collector layer adjacently disposed in a lateral direction over an electrically insulating substrate,

a first electrode layer of comprising one of an anode active material or a cathode active material over the first current collector layer;

a separator over the first electrode layer; and

a second electrode layer comprising the other of the anode active material or the cathode active material,

the second electrode layer further comprising a base portion extending from the second current collector layer in a vertical direction and a lateral extension portion extending from the base portion in the lateral direction to overlap a main surface of the first electrode layer,

wherein one or more of the first current collector layer, the first electrode layer, the separator, the second electrode layer and the second current collector layer comprises a printed layer.

2. The energy storage device of claim 1 , wherein the energy storage device is printed on the same side of the electrically insulating substrate as a core device configured to be electrically powered by the energy storage device.

3. The energy storage device of claim 1 , wherein the electrically insulating substrate comprises a polymeric substrate.

4. The energy storage device of claim 1 , wherein the electrically insulating substrate comprises a flexible substrate sufficiently flexible to be worn by a user.

5. The energy storage device of claim 1 , wherein the separator comprises:

a vertical portion interposed in the lateral direction between the base portion of the second electrode layer and a side surface of the first electrode layer; and

a horizontal portion interposed in the vertical direction between the lateral extension portion of the second electrode layer and the first electrode layer.

6. The energy storage device of claim 1 , wherein the base portion of the second electrode layer has a width that is thicker than a thickness of the lateral extension portion of the second electrode layer.

7. The energy storage device of claim 6 , wherein the width of the base portion of the second electrode layer is greater than the thickness of the lateral extension portion of the second electrode layer by a factor between two to ten.

8. The energy storage device of claim 1 , wherein the first electrode layer comprises a first electrode active material and the second electrode layer comprises a second electrode active material, wherein a molar ratio between the first electrode active material and the second electrode active material is between 0.25 and 4.0.

9. The energy storage device of claim 1 ,

wherein the first current collector layer comprises a plurality of first current collector finger structures, and

wherein the second current collector layer comprises a plurality of second current collector finger structures, wherein the first current collector finger structures and the second current collector finger structures are interleaved to alternate in the lateral direction.

10. The energy storage device of claim 9 , wherein the energy storage device is printed on the same side of the electrically insulating substrate as a core device configured to be electrically powered by the energy storage device.

11. The energy storage device of claim 9 , wherein the first electrode layer comprises a first electrode active material and the second electrode layer comprises a second electrode active material, wherein a molar ratio between the first electrode active material and the second electrode active material is between 0.25 and 4.0.

12. The energy storage device of claim 9 , wherein the first electrode layer comprises a first electrode active material and the second electrode layer comprises a second electrode active material, wherein a ratio between a lateral area of the first electrode layer and a lateral area of the second electrode is proportional to the molar ratio.

13. The energy storage device of claim 9 , wherein the first electrode layer comprises a plurality of first electrode finger structures and the second electrode layer comprises a plurality of second electrode finger structures, and wherein the first electrode finger structures and the second electrode finger structures are interleaved to alternate in the lateral direction.

14. The energy storage device of claim 13 , wherein the separator layer is over the first electrode layer and the second electrode layer.

15. The energy storage device of claim 14 , wherein the separator layer is interposed between adjacent pairs of the first electrode finger structures and the second electrode finger structures that alternate in the lateral direction.

16. The energy storage device of claim 15 , wherein the separator layer is interposed between adjacent pairs of the first current collector finger structures and the second current collector finger structures that alternate in the lateral direction.

17. The energy storage device of claim 9 , wherein the first electrode layer comprises a plurality of first electrode finger structures, wherein the separator layer is over each of the first electrode finger structures, and wherein the second electrode layer is over the separator layer.

18. The energy storage device of claim 17 , wherein the separator separates the first electrode finger structures from the second electrode layer in the lateral direction and in the a vertical direction.

19. The energy storage device of claim 18 , wherein the separator layer is interposed between adjacent pairs of the first current collector finger structures and the second current collector finger structures that alternate in the lateral direction.

20. The energy storage device of claim 9 , wherein each of the first current collector finger structures and the second current collector finger structures has a ratio of a length to a width between about 2 and 100.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2025
From: PRINTED ENERGY PTY LTD
To: RABIN WORLDWIDE, INC.
Reel/Frame 071027/0430 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE’S NAME PREVIOUSLY RECORDED ON REEL 69534 FRAME 121. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 2, 2025
From: RABIN WORLDWIDE, INC.
To: PRINTEGRICA, INC.
Reel/Frame 071162/0028 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2024
From: RABIN WORLDWIDE, INC.
To: PRINTEGRICA
Reel/Frame 069534/0121 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2019
From: LOCKETT, VERA N.; SALAH, YASSER; HARTMAN, ALEXANDRA ELYSE; KOLLI, SRI HARSHA; WHITBY, RODGER; RAY, WILLIAM JOHNSTONE; DANESHI, LEILA
To: PRINTED ENERGY PTY LTD
Reel/Frame 048864/0953 →
Continuity (4)
Provisional Application 62617856 · Jan 16, 2018
Provisional Application 62669709 · May 10, 2018
Provisional Application 62673673 · May 18, 2018
Related Publication 20190221891A1 · Jul 18, 2019
Cited By (1)
US 12,489,147