A. T. Hunt et al. 1993, Combustion Chemical Vapor Deposition: A Novel Thin Film Deposition Technique, Applied Physics Lettrs, 63: pp. 266-268, (no month. |
Bebbingon et al., “Rare earth deoped silica waveguides on Si fabricated by flame hydrolysis deposition and aerosol doping”, Applied Physics Letters, 62, No. 4, pp. 337-339, Jan. 25, 1993. |
Withers, J.C. et al., “Aluminum Coatings by a Pyrolytic Spray Chemical Vapor Disposition Process,” 2d Int'l Conf. on CVD (1970) (no month). |
Blandenet, G. et al., “Indium Oxide Deposition on Glass by Aerosol Pyrolysis,” 5th Int'l Conf on CVD (1975). |
Hirose, Y. et al., “The Synthesis of High Quality Diamond in Combustion Flame,” 89-12 Proceedings of the Electrochemical Society (1989) (no month). |
Merkle, B.D. et al., “Superconducting YBa2Cu3Ox Particulate Produced by Total Consumption Burner Processing,” A124 Mat. Sci. Eng. 31-38 (1990) (no month). |
Abe, T. et al., “Microcrystalline Diamond Deposition Using a Combustion Flame,” 59(8) Appl. Phys. Lett. 911-913 (1991) (no month). |
Han, O.Y. et al., “High Rate Deposition of Diamond Using Liquid Organic Precursors,”, 91-8 Proc. The Electrochem. Soc. 115-122 (1991) no months. |
Hirose, Y., “Combustion Flame Diamond Coating Method,” Applications of Diamond Films and Related Materials (1991) (no month). |
Hori, S. et al., “Characterization and Processing of CVD Powders for Fabrication of Composite and Compound Ceramics”,MRS Symposium Proceedings, vol. 155, pp. 3-12, 1989 (no month).* |
Smith et al., Where Do We Go From Here?, vol. 73, No. 12, Dec. 1994.* |
McHale et al., “Preparation of High-Tc Oxide Films via Flaming Solvent Spray”, Journal of Superconductivity, vol. 5, No. 6, 1992 (no month).* |
Bebbington et al., “Rare earth doped silica waveguides on Si fabricated by flame hydrolysis deposition and aerosol doping”, Applied Physics Letters, 62, No. 4, pp.337-339, Jan. 25, 1993.* |
Murakawa et al., “An Experiment in Large Area Diamond Coating Using a Combustion Flame Torch in Its Traversing Mode,” Surface and Coating Technology, vol. 43/44, pp. 22-29, (1990). |
Hirose, “Flame Synthesis of Diamond,” Workshop on diamond thin films, p. 776, (no month/date). |
“Ceramic coatings,” Tech Bites: Automotive Engineering, p. 74 (1993), (no month). |
Kirk-Othmer Concise Encyclopedia of Chemical Technology, John Wiley & Sons, Inc., New York, pp. 277, 279 (1985), (no month). |
Sundgren et al., “Growth, Structural Characterization and Properties of Hard and Wear-protective Layered Materials,” Thin Solid Films, vol. 193/194, pp. 818-831 (1990), (no month). |
Holleck et al., “Advanced Layer Material Constitution,” Thin Solid Films, vol. 153, pp. 11-17 (1987), (no month). |
Bull et al., “Multilayer Coatings for Improved Performance,” Surface and Coating Technology, vol. 78, pp. 173-184 (1996), (no month). |
Wunder et al., “Mulilayer Coatings on CFC Composites for High-temperature Applications,” Surface and Coatings Technology, vol. 100-101, pp. 329-332 (1998), (no month). |
Tsou et al., “Design of Multilayer Plasma-assisted CVD Coatings for the Oxidation Protection of Composite Materials,” Surface and Coatings Technology, vol. 79, pp. 139-150 (1996), (no month. |
Wiklund et al., “Multilayer Coatings as Corrosion Protection of Zircaloy,” Surface and Coatings Technology, vol. 86-87, pp. 530-534 (1996), (no month). |