IP Library Granted Patent US 11,637,292
Granted Patent B2
US 11,637,292 · App. 17/373,621 · Granted Apr 25, 2023

Diatomaceous energy storage devices

Inventors: Vera N. Lockett (Phoenix, AZ); Yasser Salah (Tempe, AZ); John G. Gustafson (Chandler, AZ); William J. Ray (Fountain Hills, AZ); Sri Harsha Kolli (Tempe, AZ)
Assignee: Printed Energy Pty Ltd
H01M4/9016H01G11/10H01G11/24H01G11/26H01G11/36H01G11/46H01G11/52H01M4/483H01M4/502H01M4/625H01M8/16H01G11/02H01M6/40H01M10/05H01M2300/0045Y02E60/13Y02E60/50
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Quick Facts
Patent No.
US 11,637,292
App. No.
17/373,621
Granted
Apr 25, 2023
Kind
B2
Abstract

The disclosed technology generally relates to energy storage devices, and more particularly to energy storage devices comprising frustules. According to an aspect, a supercapacitor comprises a pair of electrodes and an electrolyte, wherein at least one of the electrodes comprises a plurality of frustules having formed thereon a surface active material. The surface active material can include nanostructures. The surface active material can include one or more of a zinc oxide, a manganese oxide and a carbon nanotube.

Claims (29)

1. A supercapacitor configured to charge and discharge through an electrochemical process, the supercapacitor comprising:

a pair of electrodes contacting an electrolyte,

wherein one of the electrodes comprises frustules coated with a plurality of carbon nanotubes, and

wherein the other of the electrodes comprises frustules coated with an active material.

2. The supercapacitor of claim 1 , wherein the active material comprises a transition metal oxide.

3. The supercapacitor of claim 2 , wherein the transition metal oxide comprises a zinc oxide.

4. The supercapacitor of claim 2 , wherein the transition metal oxide comprises a manganese oxide.

5. The supercapacitor of claim 4 , wherein the manganese oxide comprises one or more of manganese dioxide (MnO 2 ), manganese (II, III) oxide (Mn 3 O 4 ), manganese(II) oxide (MnO), or manganese (III) oxide (Mn 2 O 3 ).

6. The supercapacitor of claim 1 , wherein no ion transport occurs as part of an electrochemical reaction between the one of the electrodes and the other of the electrodes during charge or discharge.

7. The supercapacitor of claim 1 , wherein the electrolyte comprises an ionic liquid.

8. The supercapacitor of claim 7 , wherein the ionic liquid comprises one or more cations selected from the group consisting of butyltrimethylammonium, 1-ethyl-3-methylimidazolium, 1-butyl-3-methylimidazolium, 1-methyl-3-propylimidazolium, 1-hexyl-3-methylimidazolium, choline, ethylammonium, tributylmethylphosphonium, tributyl(tetradecyl)phosphonium, trihexyl(tetradecyl)phosphonium, 1-ethyl-2,3-methylimidazolium, 1-butyl-1-methylpiperidinium, 1-ethyl-3-methylimidazolium, 1-methyl-1-propylpiperidinium, 1-butyl-2-methylpyridinium, 1-butyl-4-methylpyridinium, 1-butyl-1-methylpyrrolidinium, diethylmethylsulfonium or a combination thereof.

9. The supercapacitor of claim 7 , wherein the ionic liquid comprises one or more anions selected from the group consisting of tris(pentafluoroethyl)trifluorophosphate, trifluoromethanesulfonate, hexafluorophosphate, tetrafluoroborate, ethyl sulfate, dimethyl phosphate, methanesulfonate, triflate, tricyanomethanide, dibutylphosphate, bis(trifluoromethylsulfonyl)imide, bis-2,4,4-(trimethylpentyl) phosphinate, iodide, chloride, bromide, nitrate or a combination thereof.

10. A supercapacitor configured to charge and discharge through an electrochemical process, the supercapacitor comprising:

a pair of electrodes contacting an electrolyte,

wherein each of the electrodes comprises a plurality of frustules, and

wherein one but not the other of the electrodes further comprises carbon nanotubes coating the frustules.

11. The supercapacitor of claim 10 , wherein at least some of the frustules of the one of the electrodes are individually coated with the plurality of carbon nanotubes.

12. The supercapacitor of claim 10 , wherein the frustules of the other of the electrodes or both of the electrodes have formed thereon one or more transition metal oxides.

13. The supercapacitor of claim 12 , wherein the one or more transition metal oxides comprise a zinc oxide.

14. The supercapacitor of claim 12 , wherein the one or more transition metal oxides comprise a manganese oxide.

15. The supercapacitor of claim 14 , wherein the manganese oxide comprises one or more of manganese dioxide (MnO 2 ), manganese (II, III) oxide (Mn 3 O 4 ), manganese(II) oxide (MnO), or manganese (III) oxide (Mn 2 O 3 ).

16. The supercapacitor of claim 10 , wherein no ion transport occurs as part of an electrochemical reaction between the one of the electrodes and the other of the electrodes during charge or discharge.

17. The supercapacitor of claim 10 , wherein the electrolyte comprises an ionic liquid.

18. A supercapacitor configured to charge and discharge through an electrochemical process, the supercapacitor comprising:

a pair of electrodes contacting an electrolyte,

wherein one of the electrodes comprises a plurality of frustules and a plurality of carbon nanotubes, and

wherein the one of the electrodes is configured substantially as an electric double layer capacitor, while the other of the electrodes is configured substantially as a pseudo capacitor.

19. The supercapacitor of claim 18 , wherein the one of the electrodes comprises individual ones of the frustules coated with the carbon nanotubes.

20. The supercapacitor of claim 18 , wherein the other of the electrodes comprises individual ones of the frustules coated with a transition metal oxide.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2024
From: PRINTED ENERGY PTY LTD.
To: RABIN WORLDWIDE, INC.
Reel/Frame 069313/0917 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2024
From: RABIN WORLDWIDE, INC.
To: AVERY DENNISON RETAIL INFORMATION SERVICES LLC
Reel/Frame 069314/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2023
From: LOCKETT, VERA N.; SALAH, YASSER; GUSTAFSON, JOHN G.; RAY, WILLIAM J.; KOLLI, SRI HARSHA
To: PRINTED ENERGY PTY LTD
Reel/Frame 062275/0246 →
Continuity (11)
Continuation 16536112 · Aug 8, 2019
Continuation 15926896 · Mar 20, 2018
Continuation In Part 15808757 · Nov 9, 2017
Continuation 15406407 · Jan 13, 2017
Continuation 14745709 · Jun 22, 2015
Continuation In Part 14161658 · Jan 22, 2014
Continuation In Part 13944211 · Jul 17, 2013
Provisional Application 61862469 · Aug 5, 2013
Provisional Application 61750757 · Jan 9, 2013
Provisional Application 61673149 · Jul 18, 2012
Related Publication 20220006101A1 · Jan 6, 2022
Cited By (1)
US 12,315,941