IP Library › Granted Patent US 10,181,621
Granted Patent B2
US 10,181,621 · App. 15/312,904 · Granted Jan 15, 2019

Electrode for photobattery

Inventors: Andrea Paolella (Montreal, CA); Cyril Faure (Longueuil, CA); Abdelbast Guerfi (Brossard, CA); Pierre Hovington (Boucherville, CA); Karim Zaghib (Longueuil, CA)
Assignee: HYDRO-QUEBEC
H01M10/465H01G9/204H01G9/2031H01G9/2059H01M4/382H01M4/587H01M4/5825H01M10/0525H01M14/005H01M4/386H01M4/485H01M4/525H01M4/5815H01M2004/021Y02E10/542
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Quick Facts
Patent No.
US 10,181,621
App. No.
15/312,904
Granted
Jan 15, 2019
Kind
B2
Abstract

An electrode including an electrode material of the same type as electrode materials used in Li-ion batteries and a dye is provided. The electrode may further include a semiconductor material. The electrode is used in the manufacture of a battery that is rechargeable using light. Method of manufacturing an electrode, including the following steps: (a) preparing a film including an electrode material of the same type as electrode materials used in Li-ion batteries; and (b) bringing into contact the film and a solution including a photosensitive dye.

Claims (29)

1. Electrode comprising an electrode material that acts as a cathode in Li-ion batteries and a photosensitive dye in contact with a surface of the electrode material, the electrode material comprising an olivine type material selected from LiFePO 4 , LiCOO 2 , FeS 2 and V 2 O 5 .

2. Electrode according to claim 1 , further comprising a semiconductor material.

3. Electrode according to claim 2 , wherein the semiconductor material is TiO 2 , ZnO, SnO 2 , or a combination thereof.

4. Electrode according to claim 2 , wherein the semiconductor material comprises particles having a size below 100 nm.

5. Electrode according to claim 2 , wherein the semiconductor material is pre-calcined.

6. Electrode material according to claim 2 , wherein the photosensitive dye is anchored to the surface of particles of the electrode material and particles of the semiconductor material.

7. Electrode according to claim 1 , wherein the electrode material is coated with carbon.

8. Electrode according to claim 1 , wherein the electrode material comprises particles having a size below 1 μm.

9. Electrode according to claim 1 , wherein the photosensitive dye is N3, black dye, SJW-E1, N719, an organic photosensitive dye, or a combination thereof.

10. Electrode according to claim 1 , further comprising a solvent, a dispersant, a binder, or a combination thereof.

11. Electrode according to claim 10 , wherein:

the solvent is N-methyl-2-pyrrolidine (NMP), water, acetone, dimethylformamide (DMF), dimethyl sulfoxide (DMSO), or a combination thereof and/or

the dispersant is polyvinylidene difluoride (PVDF), a tension-active agent that does not react with electrode materials, an alkyl bromide ammonium salt, an alkylbenzyldimethylammonium halide, a glycol ester, a glycerol ester, or a combination thereof; and/or

the binder is polyethylene glycol (PEG), polyvinylidene difluoride (PVDF), polyvinyl acetate (PVA) or a combination thereof.

12. Electrode material according to 1 , wherein the photosensitive dye is anchored to the surface of particles of the electrode material.

13. Solid substrate having deposited thereon a material as defined in claim 1 ; optionally the solid subtract is a fluorine-doped tin oxide glass (FTO glass).

14. Battery comprising an electrode as defined in claim 1 .

15. Battery according to claim 14 , which is rechargeable using light.

16. Electrode comprising an electrode material that acts as an anode in Li-ion batteries and a photosensitive dye in contact with a surface of the electrode material, the electrode material comprising metallic lithium, graphite, silicon, Fe 2 O 3 or Li 4 Ti 5 O 12 .

17. Method of manufacturing an electrode configured to be used in a lithium-ion battery, comprising the following steps:

(a) preparing a film comprising an electrode material which reacts as an anode or a cathode when used in Li-ion batteries; and

(b) bringing into contact the film and a solution comprising a photosensitive dye, wherein the photosensitive dye is anchored to the surface of particles of the electrode material,

further comprising a preliminary step of (a1) mixing the electrode material with a semiconductor material prior to conducting step (a).

18. Method according to claim 17 , wherein step (a) comprises depositing the mixture electrode material and semiconductor material on a solid substrate; optionally the solid substrate is a fluorine-doped tin oxide glass (FTO glass).

19. Method according to claim 17 , wherein step (a) comprises depositing the electrode material on a solid substrate, optionally the solid substrate is a fluorine-doped tin oxide glass (FTO glass).

20. Method according to claim 19 , wherein depositing of the material is carried out by a Doctor Blade method, by an immersion withdrawal or dipping withdrawing method, by a serigraphy method, by a spin-coating method, or by a combination thereof.

21. Method according to claim 17 , wherein step (a) comprises using a solvent; and the method further comprises, between steps (a) and (b), a drying step followed by a cooling step; optionally the drying step is carried out at a temperature of about 400° C. and under an inert atmosphere, and cooling is carried out until room temperature is reached.

22. Method according to claim 17 , wherein step (b) comprises dipping the film into the solution comprising a photosensitive dye.

23. Method according to claim 17 , further comprising a drying step after step (b) followed a cooling step; optionally the drying step is carried out at a temperature between room temperature and 120° C. and under an inert atmosphere; and cooling is carried out until room temperature is reached.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2018
From: PAOLELLA, ANDREA; FAURE, CYRIL; GUERFI, ABDELBAST; HOVINGTON, PIERRE; ZAGHIB, KARIM
To: HYDRO-QUEBEC
Reel/Frame 045830/0849 →
Continuity (2)
Provisional Application 62000809 · May 20, 2014
Related Publication 20170110767A1 · Apr 20, 2017
Cited By (1)
US 12,213,532