Claims
- 1. A corrosion inhibitor, comprising:
an oxo-anion having the general formula (HNANON)N(ANON)N(H2O)N; wherein H is hydrogen, O is oxygen, N is an integer equal to 1 or higher, and A is selected from the group consisting of molybdenum, phosphorous, tungsten, silicon, and combination thereof; wherein the oxo-anion is capable of substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate.
- 2. The invention according to claim 1, further comprising a cation having the general formula DN;
wherein D is a metal, and N is an integer equal to 1 or higher; wherein the cation is capable of substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate.
- 3. The invention according to claim 2, wherein D is a transition metal.
- 4. The invention according to claim 2, wherein D is an alkaline earth metal.
- 5. The invention according to claim 2, wherein D is a rare earth metal.
- 6. The invention according to claim 2, wherein D is an element selected from the lanthanide series of the periodic table of elements.
- 7. The invention according to claim 2, wherein D is selected from the group consisting of barium, strontium, aluminum, zinc, lanthanum, cerium, praseodymium, neodymium, promethium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium, yttrium, scandium, and combinations thereof.
- 8. The invention according to claim 2, wherein the oxo-anion and the cation are combined to form a salt;
wherein the salt is capable of substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate.
- 9. The invention according to claim 2, wherein the oxo-anion and the cation are combined to form a supramolecule;
wherein the supramolecule is capable of substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate.
- 10. The invention according to claim 1, wherein the metallic substrate is comprised of a material selected from the group consisting of aluminum, aluminum alloys, and combinations thereof.
- 11. The invention according to claim 1, wherein the coating of the metallic substrate is comprised of a material selected from the group consisting of oxides, pigments, and combinations thereof.
- 12. A corrosion inhibitor, comprising:
a salt having the general formula (DN)(((HNANON)N(ANON)N(H2O)N)N); wherein D is a metal cation, H is hydrogen, O is oxygen, N is an integer equal to 1 or higher, and A is selected from the group consisting of molybdenum, phosphorous, tungsten, silicon, and combination thereof; wherein the salt is capable of substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate.
- 13. The invention according to claim 12, wherein D is a transition metal.
- 14. The invention according to claim 12, wherein D is an alkaline earth metal.
- 15. The invention according to claim 12, wherein D is a rare earth metal.
- 16. The invention according to claim 12, wherein D is an element selected from the lanthanide series of the periodic table of elements.
- 17. The invention according to claim 12, wherein D is selected from the group consisting of barium, strontium, aluminum, zinc, lanthanum, cerium, praseodymium, neodymium, promethium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium, yttrium, scandium, and combinations thereof.
- 18. The invention according to claim 12, wherein the salt is a supramolecule.
- 19. The invention according to claim 12, wherein the metallic substrate is comprised of a material selected from the group consisting of aluminum, aluminum alloys, and combinations thereof.
- 20. The invention according to claim 12, wherein the coating of the metallic substrate is comprised of a material selected from the group consisting of oxides, pigments, and combinations thereof.
- 21. A method for substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate, comprising:
providing an oxo-anion having the general formula (HNANON)N(ANON)N(H2O)N; wherein H is hydrogen, O is oxygen, N is an integer equal to 1 or higher, and A is selected from the group consisting of molybdenum, phosphorous, tungsten, silicon, and combination thereof; and applying a sufficient amount of the oxo-anion to the surface of the coated metallic substrate.
- 22. The invention according to claim 21, further comprising providing a cation having the general formula DN;
wherein D is a metal, and N is an integer equal to 1 or higher; wherein the cation is capable of substantially inhibiting the propagation of pit corrosion on the surface of a coated metallic substrate.
- 23. The invention according to claim 22, wherein D is selected from the group consisting of barium, strontium, aluminum, zinc, lanthanum, cerium, praseodymium, neodymium, promethium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium, yttrium, scandium, and combinations thereof.
- 24. The invention according to claim 21, wherein the metallic substrate is comprised of a material selected from the group consisting of aluminum, aluminum alloys, and combinations thereof, and the coating of the metallic substrate is comprised of a material selected from the group consisting of oxides, pigments, and combinations thereof.
Parent Case Info
[0001] This application is a continuation of U.S. patent application Ser. No. 09/915,248 filed on Jul. 25, 2001. The disclosure of the above application is incorporated herein by reference.
Continuations (1)
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Number |
Date |
Country |
| Parent |
09915248 |
Jul 2001 |
US |
| Child |
10803249 |
Mar 2004 |
US |