Claims
- 1. A method for stabilizing a nanoparticle in a solution or solid matrix comprising:
covalently binding a plurality of ligands to a nanoparticle; wherein each of said ligands has a nanoparticle binding site and at least one active site.
- 2. The method of claim 1 wherein said nanoparticle is a nanocrystal.
- 3. The method of claim 1 wherein said ligand is a dendron having a plurality of active sites.
- 4. The method of claim 1 further comprising the cross linking of said active sites of said ligands.
- 5. The method of claim 4 wherein said crosslinking of said active sites includes the addition of a crosslinking agent.
- 6. The method of claim 1 wherein said at least one active site of said ligands are hydrophobic.
- 7. The method of claim 1 wherein said at least one active site of said ligands are hydrophilic.
- 8. The method of claim 1 wherein said nanoparticle is comprised of a material selected from the group consisting of inorganic elements and inorganic-compounds.
- 9. The method of claim 8 wherein said nanoparticle is comprised of a material selected from the group consisting of gold, silver platinum, copper, iridium, palladium, silicon, germanium, iron, cobalt, nickel, iron oxide, cobalt oxide, nickel oxide, titanium oxide, zinc oxide, cadmium selenide, cadmium sulfide, cadmium telluride, zinc sulfide, zinc selenide, zinc telluride, mercury sulfide, mercury selenide, mercury telluride, indium phosphorus, indium arsenide, indium nitride, gallium arsenide, gallium phosphide, gallium nitride, gallium selenide, gallium sulfide, indium selenide, indium sulfide and indium telluride.
- 10. The method of claim 1 wherein said nanoparticle is comprised of a combination of elements from group IV, groups II and VI or groups III and V of the periodic table.
- 11. The method of claim 1 wherein said at least one active site is selected from the group consisting of hydroxyl groups, amine groups, ethylene groups, dipyridine groups, carboxylic acid groups, carbonyl groups, halide groups and ester groups.
- 12. The method of claim 1 wherein said nanocrystal binding site is selected from the group consisting of thiol, carboxylic acid, amine, hydroxylamide, phosphine, phosphine oxide, and phosphonic acid.
- 13. A stable nanoparticle in a solution or solid matrix comprising:
a plurality of ligands covalently bound to a nanoparticle; wherein each of said ligands has a nanoparticle binding site and at least one active site.
- 14. The stable nanoparticle of claim 13 wherein said nanoparticle is a nanocrystal.
- 15. The stable nanoparticle of claim 13 wherein said ligand is a dendron having a plurality of active sites.
- 16. The stable nanoparticle of claim 13 wherein said active sites of said ligands are chemically cross linked.
- 17. The stable nanoparticle of claim 16 further comprising a crosslinking agent.
- 18. The stable nanoparticle of claim 13 wherein said at least one active site of said ligands are hydrophobic.
- 19. The stable nanoparticle of claim 13 wherein said at least one active site of said ligands are hydrophilic.
- 20. The stable nanoparticle of claim 13 wherein said nanoparticle is comprised of a material selected from the group consisting of gold, silver platinum, copper, iridium, palladium, silicon, germanium, iron, cobalt, nickel, iron oxide, cobalt oxide, nickel oxide, titanium oxide, zinc oxide, cadmium selenide, cadmium sulfide, cadmium telluride, zinc sulfide, zinc selenide, zinc telluride, mercury sulfide, mercury selenide, mercury telluride, indium phosphorus, indium arsenide, indium nitride, gallium arsenide, gallium phosphide, gallium nitride, gallium selenide, gallium sulfide, indium selenide, indium sulfide and indium telluride.
- 21. The stable nanoparticle of claim 13 wherein said nanoparticle is comprised of a combination of elements from the noble metals, transition metals, metal oxides, metal halides, group IV, groups II and VI or groups III and V.
- 22. The stable nanoparticle of claim 13 wherein said at least one active site is selected from the group consisting of hydroxyl groups, amine groups, ethylene groups, dipyridine groups, carboxylic acid groups, carbonyl groups, halide groups and ester groups.
- 23. The stable nanocrystal of claim 13 wherein said nanocrystal binding site is selected from the group consisting of thiol, carboxylic acid, hydroxylamide, phosphine, amine, phosphine oxide, and phosphonic acid.
- 24. A biomedical detection reagent comprising:
a stable nanocrystal produced by the method of claim 1, a compound designed to detect a biological analyte, wherein said nanocrystal and said compound are covalently coupled to each other.
- 25. The reagent of claim 24 wherein said compound is a antibody for use in an immunoassay.
- 26. The reagent of claim 24 wherein said compound is a polynucleotide probe for use in a polynucleotide hyrbridization reaction.
- 27. A laser or LED comprising a stable nanoparticle produced by the method of claim 1 wherein said nanoparticle emits photo-radiation upon photo or electronic excitation.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This U.S. utility Patent Application claims priority to U.S. Provisional patent application No. 60/290,541, filed on May 14, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60290541 |
May 2001 |
US |