Claims
- 1. A composition comprising hexagonal ferrite particles coated with a dispersant, which particles have an average particle size of from about 10 nm to about 50 nm wherein less than about 5 percent of the particles have a particle size below about 5 nm and less than about 5 percent of the particles have a particle size above about 70 nm.
- 2. The composition of claim 1 wherein said particles have an average particle size of from about 15 nm to 40 nm and wherein the particles have a coercivity in the range of from about 1500 Oe to about 6000 Oe.
- 3. The composition of claim 2 wherein said particles have an average particle size of from about 15 nm to 35 nm wherein the particles have a coercivity in the range of from about 2000 Oe to 2500 Oe.
- 4. The composition of claim 2 wherein the ferrite contains iron III atoms and atoms of an iron substitute.
- 5. The composition of claim 3 wherein the iron substitute is selected from the group consisting of Ti, Co, and Cr.
- 6. The composition of claim 5 wherein the ratio of the iron III atoms to the atoms of the iron substitute is from about 11.9:0.1 to about 10:2 and the iron substitute includes Ti, Co, and Cr.
- 7. The composition of claim 1 wherein the dispersant is selected from the group consisting of stearic acid, oleic acid, lauric, aminated propylene oxides, acrylate salts, polyacrylic acids, polymethacrylic acids, salts of polymethacrylic acid, quaternary ammonium salts, and phosphate esters.
- 8. The composition of claim 6 wherein the dispersant includes a phosphate ester.
- 9. The composition of claim 6 wherein the dispersant includes a salt of a polymethacrylic acid.
- 10. A method for preparing coated metal oxide nanoparticles comprising the steps of a) dissolving a metal-containing compound into a solvent to form a solution; b) introducing the solution into a heated zone for such a time and at such a temperature to make a nanocrystalline metal oxide; c) milling the nanocrystalline oxide in the presence of a dispersant and a dispersion medium to form the coated metal oxide nanoparticles.
- 11. The method of claim 10 wherein the nanocrystalline oxide is a mixed metal oxide selected from the group consisting of ferromagnetic materials, piezoelectric materials, perovskite materials, and ion-conducting materials.
- 12. The method of claim 10 wherein the metal-containing compound is selected from the group consisting of soluble metal salts, metal alkoxides, and organometallics.
- 13. The method of claim 10 wherein the solution is introduced within an aerosol into a heated furnace.
- 14. The method of claim 10 wherein the dispersion medium is aqueous based and dispersant is a salt of a polymethacrylic acid.
- 15. The method of claim 10 wherein the dispersion medium is organic and the dispersant is a phosphate ester.
- 16. The method of claim 10 wherein the metal-containing compound is dissolved in the solvent in the presence of a stoichiometric excess of citric acid with respect to the metal-containing compound.
- 17. The method of claim 10 which in step (b) forms a friable product having aggregated nanocrystals in a hollow, single crystal thick walled structure.
- 18. The method of claim 10 wherein the coated metal oxide nanoparticles have an average particle size of from about 10 nm to 50 nm, wherein less than about 5 percent of the particles have a particle size below about 5 nm and less than about 5 percent of the particles have a particle size above about 70 nm.
- 19. The method of claim 18, wherein the size distribution of the coated metal oxide nanoparticles is narrowed by ultrafiltration.
- 20. A method for preparing coated substituted hexagonal ferrite nanoparticles comprising the steps of a) dissolving salts of iron III, barium, cobalt, titanium, and chromium into water and at least a 40 percent stoichiometric excess of citric acid with respect to the salts to form a solution; b) introducing the solution within an aerosol into a heated furnace to make nanocrystalline hexagonal ferrite aggregates; and c) milling the aggregate in the presence of a phosphate ester and cyclohexanone to form the coated substituted hexagonal ferrite nanoparticles.
CROSS-REFERENCE STATEMENT
[0001] This application claims the benefit of U.S. Provisional application No. 60/384,354 filed May 29, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
|
60384354 |
May 2002 |
US |