Claims
- 1. A method for synthesizing a rare-earth oxysulfide phosphor wherein said method comprises:
(a) combining a first rare-earth nitrate salt and a second rare-earth nitrate salt; (b) adding a sulfidizing agent to said first and second rare-earth nitrate salts; and (c) heating.
- 2. The method, according to claim 1, wherein the rare-earth oxysulfide phosphor has the chemical formula Ln12-xLn2xO2S where Ln1 and Ln2 are different elements each having an atomic number from 57 to 71.
- 3. The method, according to claim 1, wherein the rare earth nitrate salt is selected from the group consisting of nitrate salts of scandium, yttrium, lanthanum, cerium, praseodymium, neodymium, promethium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium and lutetium.
- 4. The method, according to claim 1, wherein the sulfidizing agent is dithiooxamide (C2S2N2H4).
- 5. The method, according to claim 1, wherein heating is conducted in a furnace in the presence of air.
- 6. The method, according to claim 1, wherein the heating temperature is less than 1000° C.
- 7. The method, according to claim 6, wherein the heating temperature is between about 200° C. and about 300° C.
- 8. The method, according to claim 7, wherein the heating temperature is about 230° C.
- 9. The method, according to claim 2, wherein the value of x is between about 0.001 and about 0.1.
- 10. The method, according to claim 1, further comprising a period of drying before heating the sulfidizing agent and nitrate salt blend.
- 11. The method, according to claim 10, wherein the period of drying is sufficient to prevent hydration of the rare-earth nitrate salts.
- 12. The method, according to claim 1, further comprising grinding the rare-earth oxysulfide phosphor following heating of the sulfidizing agent and the nitrate salt blend.
- 13. The method, according to claim 12, further comprising annealing the ground rare-earth oxysulfide phosphor.
- 14. The method, according to claim 1, wherein the amount of said first nitrate salt is sufficiently greater than the amount of said second nitrate salt such that a solid solution is formed wherein the rare earth contributed by said first rare-earth nitrate salt forms a lattice and the rare earth contributed by said second rare-earth nitrate salt is dispersed throughout the lattice.
- 15. The method, according to claim 2, wherein Ln is selected from the group consisting of La, Gd and Y; and Ln2 is selected from the group consisting of Ev, Tm and Jb.
- 16. The method, according to claim 1, used to produce a compound of the formula La2-xEuxO2S.
- 17. The method, according to claim 1, used to produce a compound of the formula La2−xTmxO2S.
- 18. The method, according to claim 1, used to produce a compound of the formula La2−xTbxO2S.
- 19. A rare-earthoxysulifide phosphor produced by a process comprising:
(a) combining a first earth and nitrate salt and a second rare-earth nitrate salt; (b) adding a sulfidizing agent to first and second rare-earth nitrate salts; and (c) heating.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional application No. 60/364,838, filed Mar. 13, 2002.
GOVERNMENT SUPPORT
[0002] This invention was made with government support under a grant awarded from DARPA to Georgia Tech under grant number MDA972-93-1-0030 with a subcontract to the University of Florida and administered at the University of Florida under grant number 450947012. The government has certain rights in the invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60364838 |
Mar 2002 |
US |