IP Library Granted Patent US 11,446,649
Granted Patent B2
US 11,446,649 · App. 16/342,589 · Granted Sep 20, 2022

Three-part nano-catalyst and use thereof for photocatalysis

Inventors: Jérémy Cure (Le Nayrac, FR); Myrtil Kahn (Toulouse, FR); Kévin Cocq (Toulouse, FR); Gérald Casterou (Cintegabelle, FR); Rémi Chauvin (Toulouse, FR); Valérie Maraval (Soreze, FR); Hala Assi (Toulouse, FR)
Assignees: CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE; Jérémy Cure; UNIVERSITÉ DE RENNES 1; UNIVERSITÉ PAUL SABATIER TOULOUSE III
B01J31/2295B01J19/123B01J19/127B01J21/063B01J23/06B01J23/50B01J23/52B01J23/54B01J23/72B01J23/80B01J31/069B01J31/26B01J35/004B01J35/0013B01J37/04B01J37/345C01B3/042C01B13/0207B01J21/02B01J2219/0877B01J2219/0892B01J2219/1203Y02E60/36
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Quick Facts
Patent No.
US 11,446,649
App. No.
16/342,589
Granted
Sep 20, 2022
Kind
B2
Abstract

Disclosed is a nanocatalyst-type nanoscale composition including a nanoparticle semiconductor, plasmonic metal nanoparticles and an organic photosensitiser of the carbo-mer type. Also disclosed is a method for producing such a nano-catalyst. Also disclosed is use of the nanocatalyst for photoelectrolysis, in particular, for the photoelectrolysis of water, as well as to a power source including the nanocatalyst.

Claims (25)

1. A three part nano-catalyst comprising:

a semiconductor in nanoparticulate or nanorod form;

nanoparticles of plasmonic metal; and

an organic photo-sensitizer that is a carbo-mer.

2. The nano-catalyst according to claim 1 , wherein the semiconductor in nanoparticulate or nanorod form is a metal oxide.

3. The nano-catalyst according to claim 1 , wherein the plasmonic metal is gold, silver, copper, aluminium or platinum.

4. The nano-catalyst according to claim 1 , wherein the carbo-mer is a carbo-benzene.

5. The nano-catalyst according to claim 1 , wherein the nanoparticles of plasmonic metal are located on the surface of the semiconductor in nanoparticulate or nanorod form.

6. The nano-catalyst according to claim 1 , wherein the semiconductor in nanoparticulate or nanorod form, and/or the nanoparticles of plasmonic metal are coated with the photosensitizer.

7. A method for fabricating a three-part nano-catalyst according to claim 1 comprising the following steps:

(1a) mixing a semiconductor in nanoparticulate or nanorod form with an organic photosensitizer;

(1b) mixing the composition obtained at step (1a) with a complex comprising an ion of a plasmonic metal;

(2) irradiating the composition obtained at step (1b) under electromagnetic radiation.

8. The method according to claim 7 , wherein the complex comprising an ion of the plasmonic metal is an amidinate or carboxylate of silver, gold, copper, aluminium or platinum.

9. A process for producing hydrogen comprising applying an effective amount of the three-part nano-catalyst according to claim 1 .

10. A power supply device, comprising a three-part nano-catalyst according to claim 1 .

11. The three-part nano-catalyst of claim 1 , wherein the organic photo-sensitizer is a carbo-benzene or carbo-n-butadiene.

12. The three-part nano-catalyst of claim 2 , wherein the semiconductor in nanoparticulate or nanorod form is selected from the group consisting of: tin oxide, indium oxide, gallium oxide, tungsten oxide, copper oxide, nickel oxide, cobalt oxide, iron oxide, zinc oxide and titanium oxide.

13. The method of claim 7 , wherein the step (1b) is followed by an agitation step (1c).

14. The method of claim 7 , wherein the electromagnetic radiation of step (2) is sunlight.

15. The nano-catalyst according to claim 1 , wherein the carbo-mer is selected from the group consisting of 4-[10-(4-aminophenyl)-4,7,13,16-tetraphenylcyclooctadeca-1,2,3,7,8,9,13,14,15-nonaen-5,11,17-triyn-1-yl]aniline or 4,4′ ((4,7,13,16-tetraphenylcyclooctadeca-1,2,3,7,8,9,13,14,15-nonaen-5,11,17-triyne-1,10-diyl)bis(ethyne-2,1-diyl))dianiline.

16. The three-part nano-catalyst of claim 11 , wherein the semiconductor in nanoparticulate or nanorod form is selected from the group consisting of: tin oxide, indium oxide, gallium oxide, tungsten oxide, copper oxide, nickel oxide, cobalt oxide, iron oxide, zinc oxide and titanium oxide.

17. The nano-catalyst according to claim 11 , wherein the carbo-mer is selected from the group consisting of 4-[10-(4-aminophenyl)-4,7,13,16-tetraphenylcyclooctadeca-1,2,3,7,8,9,13,14,15-nonaen-5,11,17-triyn-1-yl]aniline or 4,4′ ((4,7,13,16-tetraphenylcyclooctadeca-1,2,3,7,8,9,13,14,15-nonaen-5,11,17-triyne-1,10-diyl)bis(ethyne-2,1-diyl))dianiline.

18. The nano-catalyst according to claim 11 , wherein the plasmonic metal is gold, silver, copper, aluminium or platinum.

19. The nano-catalyst according to claim 11 , wherein the nanoparticles of plasmonic metal are located on the surface of the semiconductor in nanoparticulate or nanorod form.

Assignments (2)
MERGER Recorded Oct 19, 2023
From: UNIVERSITE DE RENNES I
To: UNIVERSITE DE RENNES
Reel/Frame 065490/0667 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2019
From: CURE, JÉRÉMY; KAHN, MYRTIL; COCQ, KÉVIN; CASTEROU, GÉRALD; CHAUVIN, RÉMI; MARAVAL, VALÉRIE; ASSI, HALA
To: CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE; CURE, JÉRÉMY; UNIVERSITÉ DE RENNES 1; UNIVERSITÉ PAUL SABATIER TOULOUSE III
Reel/Frame 051004/0099 →