IP Library Granted Patent US 10,774,429
Granted Patent B2
US 10,774,429 · App. 15/098,071 · Granted Sep 15, 2020

Anti-corrosion nanoparticle compositions

Inventors: Bryon J. Tarbet (Highland, UT); William H. Niedermeyer (West Jordan, UT)
Assignee: ATTOSTAT, INC.
C23F13/005C09D5/084C23F11/18F16L58/04
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Quick Facts
Patent No.
US 10,774,429
App. No.
15/098,071
Granted
Sep 15, 2020
Kind
B2
Abstract

Anti-corrosion nanoparticle compositions include a carrier and a plurality of nonionic metal nanoparticles. The metal nanoparticles can be spherical-shaped and/or coral-shaped metal nanoparticles. The nanoparticles are selected so as to locate at the grain boundaries of a metal or metal alloy when the anti-corrosion composition is applied to the metal or alloy, thereby reducing or preventing intergranular corrosion of the metal or alloy.

Claims (32)

1. An anti-corrosion composition, comprising:

a carrier that is readily applied to a metal or metal alloy;

an electrolytic modifier, wherein the electrolytic modifier comprises a reducing agent for a metal, wherein the reducing agent includes one or more of nitrite, sulfite, phosphite, or polyphosphate, wherein the reducing agent is included at a concentration of between about 50 ppm and 200 ppm; and

a plurality of nonionic metal nanoparticles suspended in the carrier and selected in size and shape to locate at grain boundaries of a metal or metal alloy upon application of the carrier to the metal or metal alloy,

wherein the metal nanoparticles are formed from one or more metals selected from silver, platinum, palladium, stainless steel, silver alloys, gold alloys, platinum alloys, palladium alloys, austenite nickel-chromium alloys, nickel-copper alloys, or nickel-copper-iron-manganese alloys, and

wherein the anti-corrosion composition contains no more than about 100 ppm of the metal nanoparticles.

2. The anti-corrosion composition of claim 1 , wherein the nonionic metal nanoparticles comprise at least one metal selected from the group consisting of silver-antimony (Ag—Sb) alloys, platinum alloys, palladium alloys, stainless steel, austenite nickel-chromium alloys, nickel-copper alloys, and nickel-copper-iron-manganese alloys.

3. The anti-corrosion composition of claim 1 , wherein the nonionic metal nanoparticles comprise at least one metal alloy formed from at least one of gold, silver, platinum, or palladium alloyed with at least one of antimony, bismuth, or lead.

4. An anti-corrosion composition, comprising: a carrier that is readily applied to a metal or metal alloy;

an electrolytic modifier, wherein the electrolytic modifier comprises a reducing agent, and wherein the reducing agent includes one or more nitrite, sulfite, phosphite or polyphosphate included at a concentration of between about 50 ppm and 200 ppm; and

a plurality of nonionic metal nanoparticles suspended in the carrier and selected in size and shape to locate at grain boundaries of a metal or metal alloy upon application of the carrier to the metal or metal alloy.

5. The anti-corrosion composition of claim 4 , wherein the electrolytic modifier is configured to alter the amount or strength of adsorption of the nanoparticles at the grain boundaries.

6. The anti-corrosion composition of claim 4 , wherein the nonionic metal nanoparticles have a mean diameter or length and wherein at least 99% of the metal nanoparticles have a diameter or length within 30% of the mean diameter or length.

7. The anti-corrosion composition as in claim 4 , wherein the nonionic metal nanoparticles have a ξ-potential with an absolute value of at least 10 mV.

8. The anti-corrosion composition of claim 4 , wherein the nonionic metal nanoparticles include spherical-shaped nanoparticles, and wherein the spherical-shaped nanoparticles have a mean diameter and wherein at least 99% of the spherical-shaped nanoparticles have a diameter within ±3 nm of the mean diameter.

9. The anti-corrosion composition of claim 4 , wherein the volatility of the carrier allows for quick evaporation of the carrier and rapid deposition of the nanoparticles onto a surface of a metal or alloy.

10. The anti-corrosion composition of claim 4 , wherein the viscosity of the carrier allows for sufficient coating of a surface of a metal or metal alloy.

11. The anti-corrosion composition of claim 4 , wherein the metal nanoparticles are formed from one or more metals selected from the group consisting of silver, gold, platinum, palladium, rhodium, osmium, ruthenium, rhodium, rhenium, molybdenum, copper, iron, stainless steel, nickel, tin, beryllium, cobalt, antimony, chromium, manganese, zirconium, zinc, tungsten, titanium, vanadium, lanthanum, cerium, heterogeneous mixtures thereof, and alloys thereof.

12. The anti-corrosion composition of claim 4 , wherein the nonionic metal nanoparticles comprise at least one metal alloy selected from the group consisting of silver-antimony (Ag—Sb) alloys, platinum alloys, palladium alloys, stainless steel, austenite nickel-chromium alloys, nickel-copper alloys, nickel-copper-iron-manganese alloys, and alloys formed from at least one of gold, silver, platinum, or palladium alloyed with at least one of antimony, bismuth, or lead.

13. An anti-corrosion composition, comprising:

a carrier that is readily applied to a metal or metal alloy;

an electrolytic modifier that includes one or more of nitrite, sulfite, phosphite, or polyphosphate included at a concentration of between about 50 ppm and 200 ppm; and

a plurality of nonionic metal nanoparticles suspended in the carrier and selected in size and shape to locate at grain boundaries of a metal or metal alloy upon application of the carrier to the metal or metal alloy,

wherein the metal nanoparticles are formed from one or more ground state metals selected from the group consisting of silver, gold, platinum, palladium, rhodium, osmium, ruthenium, rhodium, rhenium, molybdenum, copper, iron, stainless steel, nickel, tin, beryllium, cobalt, antimony, bismuth, lead, chromium, manganese, zirconium, zinc, tungsten, titanium, vanadium, lanthanum, cerium, heterogeneous mixtures thereof, and alloys thereof.

14. The anti-corrosion composition of claim 13 , wherein the anti-corrosion composition contains no more than about 100 ppm of the metal nanoparticles.

15. The anti-corrosion composition of claim 13 , wherein the nonionic metal nanoparticles comprise at least one metal alloy selected from the group consisting of silver-antimony (Ag—Sb) alloys, platinum alloys, palladium alloys, stainless steel, austenite nickel-chromium alloys, nickel-copper alloys, nickel-copper-iron-manganese alloys, and alloys formed from at least one of gold, silver, platinum, or palladium alloyed with at least one of antimony, bismuth, or lead.

16. An anti-corrosion composition, comprising:

a carrier that is readily applied to a metal or metal alloy;

an electrolytic modifier that includes one or more of nitrite, sulfite, phosphite, or polyphosphate included at a concentration of between about 50 ppm and 200 ppm; and

a plurality of nonionic metal nanoparticles suspended in the carrier and selected in size and shape to locate at grain boundaries of a metal or metal alloy upon application of the carrier to the metal or metal alloy,

wherein the nonionic metal nanoparticles comprise at least one metal alloy selected from the group consisting of silver-antimony (Ag—Sb) alloys, platinum alloys, palladium alloys, stainless steel, austenite nickel-chromium alloys, nickel-copper alloys, nickel-copper-iron-manganese alloys, and alloys formed from at least one of gold, silver, platinum, or palladium alloyed with at least one of antimony, bismuth, or lead.

17. The anti-corrosion composition of claim 16 , wherein the nonionic metal nanoparticles comprise a silver-antimony (Ag—Sb) alloy.

Assignments (2)
CHANGE OF NAME Recorded Nov 23, 2021
From: ATTOSTAT, INC.
To: EVOQ NANO, INC.
Reel/Frame 058195/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2016
From: TARBET, BRYON J.; NIEDERMEYER, WILLIAM H.
To: ATTOSTAT, INC.
Reel/Frame 038272/0613 →
Continuity (3)
Provisional Application 62146587 · Apr 13, 2015
Provisional Application 62170882 · Jun 4, 2015
Related Publication 20160298243A1 · Oct 13, 2016
Cited By (2)
US 12,456,759 US 12,610,952