IP Library Granted Patent US 7,749,300
Granted Patent B2
US 7,749,300 · App. 12/133,548 · Granted Jul 6, 2010

Photochemical synthesis of bimetallic core-shell nanoparticles

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Quick Facts
Patent No.
US 7,749,300
App. No.
12/133,548
Granted
Jul 6, 2010
Kind
B2
Abstract

A method of forming bimetallic core-shell metal nanoparticles including a core of a first metal material and a shell of a second metal material, the method including photochemically producing metallic nanoparticle cores of the first metal material, and forming a shell of the second metal material around the cores. The shell can be formed by adding shell-forming precursor materials to a solution or suspension of the cores and photochemically forming the shells around the cores, or by separately photochemically producing metallic nanoparticles of the second metal material and mixing the metallic nanoparticles of the second metal material and the metallic nanoparticle cores to cause the metallic nanoparticles of the second metal material to form a shell around the metallic nanoparticle cores.

Claims (27)

1. A method of forming bimetallic core-shell metal nanoparticles comprising a core of a first metal material and a shell of a second metal material, the method comprising:

photochemically producing metallic nanoparticle cores of the first metal material; and

forming a shell of the second metal material around the cores,

wherein the shell is formed by a method comprising:

separately photochemically producing metallic nanoparticles of the second metal material, wherein the metallic nanoparticles of the second metal material have a smaller average particle size than the metallic nanoparticle cores; and

mixing the metallic nanoparticles of the second metal material and the metallic nanoparticle cores to cause the metallic nanoparticles of the second metal material to form a shell around the metallic nanoparticle cores.

2. The method of claim 1 , wherein the first metal material and second metal material are independently selected from the group consisting of copper, aluminum, magnesium, manganese, zinc, chromium, lead, cadmium, cobalt, nickel, gold, silver, platinum, tin, palladium, indium, iron, tungsten, molybdenum, ruthenium, bismuth, mixtures thereof, and alloys thereof.

3. The method of claim 2 , wherein the first metal material and second metal material are different.

4. The method of claim 2 , wherein the first metal material is copper and the second metal is selected from the group consisting of gold, silver, platinum, palladium, mixtures thereof, and alloys thereof.

5. The method according to claim 1 , wherein the step of photochemically producing the metallic nanoparticle cores comprises:

mixing a metal salt and a reducing agent in a solvent medium to form a solution or suspension, and

irradiating the solution or suspension to cause the formation of the metallic nanoparticle cores.

6. The method according to claim 5 , wherein the metal salt is a sulfate, halide, nitrate, acetate, formate, phosphate, acetylacetonate, carbonate, or a mixture thereof.

7. The method according to claim 5 , wherein the reducing agent is produced by a Norrish Type I cleavage process or a Norrish Type II photoinitiation process.

8. The method according to claim 5 , wherein the reducing agent is a radical.

9. The method according to claim 8 , wherein the radical is a ketyl radical.

10. The method according to claim 5 , wherein the solvent medium is an aqueous medium.

11. The method according to claim 5 , wherein the solution or suspension is deaerated.

12. The method according to claim 1 , wherein the bimetallic core-shell metal nanoparticles have an average diameter of about 1 nm to about 1000 nm.

13. The method according to claim 1 , wherein the shells protect the metallic nanoparticle cores from oxidation.

14. The method according to claim 1 , wherein the second metal material anneals at a temperature of less than about 120° C., but the first metal material does not anneal at a temperature of less than about 120° C.

15. The method according to claim 1 , wherein both the first and second metal materials anneal at a temperature of less than about 120° C.

16. A method of forming an ink, comprising:

forming bimetallic core-shell metal nanoparticles by the method of claim 1 , and

formulating the bimetallic core-shell metal nanoparticles into an ink.

17. The method of claim 16 , wherein formed bimetallic core-shell metal nanoparticles are extracted from solvent or suspension into an ink vehicle.

18. The method of claim 16 , wherein the ink is an inkjet ink.

Assignments (9)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2025
From: XEROX CORPORATION
To: GENESEE VALLEY INNOVATIONS, LLC
Reel/Frame 073842/0479 →
SECOND LIEN NOTES PATENT SECURITY AGREEMENT Recorded Jul 2, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 071785/0550 →
FIRST LIEN NOTES PATENT SECURITY AGREEMENT Recorded Apr 11, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 070824/0001 →
SECURITY INTEREST Recorded Feb 13, 2024
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 066741/0001 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT RF 064760/0389 Recorded Feb 13, 2024
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: XEROX CORPORATION
Reel/Frame 068261/0001 →
SECURITY INTEREST Recorded Nov 20, 2023
From: XEROX CORPORATION
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 065628/0019 →
SECURITY INTEREST Recorded Jun 22, 2023
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 064760/0389 →
RELEASE OF SECURITY INTEREST IN PATENTS AT R/F 062740/0214 Recorded May 18, 2023
From: CITIBANK, N.A., AS AGENT
To: XEROX CORPORATION
Reel/Frame 063694/0122 →
SECURITY INTEREST Recorded Nov 10, 2022
From: XEROX CORPORATION
To: CITIBANK, N.A., AS AGENT
Reel/Frame 062740/0214 →