Claims
- 1. A method of preparing an aluminosilicate sol-gel film comprising:
- mixing in a 1:1 ratio by weight, chelated aluminum alkoxide and polydimethylsiloxane, the aluminum alkoxide and polydimethylsiloxane being mixed in a solvent and refluxed at approximately the boiling temperature of the solvent to produce a sol-gel mixed with the solvent, the sol-gel including polymerized aluminosilicate;
- cooling the sol-gel and solvent mixture to room temperature;
- adding additional solvent to the sol-gel and solvent mixture to reduce the viscosity of the mixture;
- coating a substrate with the reduced viscosity sol-gel and solvent mixture;
- drying the sol-gel and solvent mixture on the substrate to evaporate at least a portion of the solvent and to produce an organically modified aluminosilicate sol-gel film on the substrate;
- heating the sol-gel film; and
- cooling the sol-gel film.
- 2. The method of claim 1 wherein mixing in a 1:1 ratio by weight chelated aluminum alkoxide and polydimethylsiloxane comprises mixing the chelated aluminum alkoxide and polydimethylsiloxane in an alcohol solvent.
- 3. The method of claim 2 wherein mixing in a 1:1 ratio by weight chelated aluminum alkoxide and polydimethylsiloxane comprises mixing the chelated aluminum alkoxide and polydimethylsiloxane in isopropanol, the isopropanol being mixed in a ratio by volume of 1 part isopropanol to 2 parts chelated aluminum alkoxide and polydimethylsiloxane mixture.
- 4. The method of claim 3 wherein mixing the chelated aluminum alkoxide and polydimethylsiloxane in isopropanol further comprises mixing the chelated aluminum alkoxide and polydimethylsiloxane in isopropanol at approximately 80.degree. C. for at least about 30 minutes.
- 5. The method of claim 1 wherein drying the sol-gel and solvent mixture on the substrate to evaporate at least a portion of the solvent and to produce a sol-gel film on the substrate comprises drying the sol-gel and solvent mixture on the substrate to produce a substantially crack-free organically modified aluminosilicate film on the substrate.
- 6. The method of claim 5 wherein drying the sol-gel and solvent mixture on the substrate to evaporate at least a portion of the solvent and to produce a sol-gel film on the substrate comprises drying the sol-gel and solvent mixture on the substrate at room temperature for at least about 1 hour.
- 7. The method of claim 1 wherein heating the sol-gel film comprises heating the sol-gel film to enhance polymerization of the sol-gel film.
- 8. The method of claim 1 wherein heating the sol-gel film comprises heating the sol-gel film to harden the sol-gel film.
- 9. The method of claim 1 wherein heating the sol-gel film comprises heating the sol-gel film to evaporate residual solvent.
- 10. The method of claim 1 wherein heating the sol-gel film comprises heating the sol-gel film to at least about 400.degree. C. for at least about 1 hour.
- 11. The method of claim 10 wherein heating the sol-gel film further comprises heating the sol-gel film to about 400.degree. C. for about 5 hours.
- 12. The method of claim 11 wherein heating the sol-gel film further comprises heating the sol-gel film to about 400.degree. C. by raising the temperature of the sol-gel film by about 3.degree. C. per minute to about 400.degree. C. and maintaining the temperature at about 400.degree. C. for about 5 hours.
- 13. A method of preparing an aluminosilicate sol-gel film on a substrate to minimize cracking of the aluminosilicate sol-gel film, the method comprising:
- combining aluminum di (sec-butoxide) acetoacetic ester chelate (ALSBC) and silanol terminated polydimethylsiloxane (PDMS) in a 1:1 ratio by weight to produce an ALSBC.backslash.PDMS mixture;
- adding isopropanol to the ALSBC.backslash.PDMS mixture in a volume ratio of 1 part isopropanol to 2 parts ALSBC.backslash.PDMS mixture;
- mixing the ALSBC.backslash.PDMS mixture and isopropanol at approximately 80.degree. C. for at least about 30 minutes to facilitate a reaction which results in production of aluminosilicate sol-gel, the isopropanol being refluxed during the mixing, the aluminosilicate sol-gel and isopropanol forming an aluminosilicate sol-gel and isopropanol mixture;
- cooling the aluminosilicate sol-gel and isopropanol mixture to about room temperature;
- adding additional isopropanol to the aluminosilicate sol-gel and isopropanol mixture to produce a reduced viscosity mixture, the additional isopropanol being added in a volume ratio of approximately 4 parts isopropanol to 1 part aluminosilicate sol-gel and isopropanol mixture;
- coating the substrate with the reduced viscosity aluminosilicate sol-gel and isopropanol mixture;
- drying the reduced viscosity aluminosilicate sol-gel and isopropanol mixture on the substrate to produce an organically modified substantially crack-free aluminosilicate sol-gel film on the substrate;
- heating the organically modified substantially crack-free aluminosilicate sol-gel film to at least about 400.degree. for at least about 1 hour to enhance polymerization of the substantially crack-free aluminosilicate sol-gel film; and
- cooling the substantially crack-free aluminosilicate sol-gel film.
- 14. The method of claim 13 wherein heating the organically modified substantially crack-free aluminosilicate sol-gel film further comprises heating the organically modified substantially crack-free aluminosilicate sol-gel film to at least about 400.degree. C. by raising the temperature of the substantially crack-free aluminosilicate sol-gel film by about 3.degree. C. per minute to at least about 400.degree. C. and maintaining the temperature of the substantially crack-free aluminosilicate sol-gel film for about 5 hours.
CROSS REFERENCES TO RELATED APPLICATIONS
The following U.S. patents and co-pending U.S. patent applications are herein incorporated by reference: U.S. Pat. No. 5,196,229 entitled "Coated Phosphor Articles"; co-pending and commonly assigned U.S. patent application Ser. No. 92CR178/JVK of Chung et al entitled "Use of Sol-Gel Materials As Phosphor Carrier In Fabrication of Fluorescent Lamps"; and co-pending and commonly assigned U.S. patent application Ser. No. 95CR041/JVK of Shaw entitled "Avionics Grade Fluorescent Lamp Resistant to Lumen Depreciation."
US Referenced Citations (11)
Foreign Referenced Citations (5)
Number |
Date |
Country |
44-12274 |
Jun 1969 |
JPX |
44-12273 |
Jun 1969 |
JPX |
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Sep 1979 |
JPX |
55-056335 |
Apr 1980 |
JPX |
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JPX |
Non-Patent Literature Citations (2)
Entry |
"Sol-Gel Processing of Complex Oxide Films", Yi et al, Ceramic Bulletin, 70(7), pp. 1173-1179. |
Publication by Carol Ashley & Scott Reed, in Manufacturing Technology, pp. 5-6, dated Nov. 1992, entitled "Sol-gel Processing of Tailored Thin Films". |