Transparent poly(vinyl acetate)-silica gels by a sol-gel process by Anna B. Wojcik, et al.; SpieWeb, abstract only, Dec. 1993. |
Metamorphic Materials: Restructuring Siliceous Mesoporous Materials by Deepa Khushalani, et al.; Advanced Materials, pp. 842-846, 1995. |
Pore Structure Control of Silica Gels Based on Phase Separation by Kazuki Nakanishi; Journal of Porous Materials 4, 199 pp. 67-112, 1997. |
Bacterial templating of ordered macrostructures in silica-surfactant mesophases by Sean A. Davis, et al.; Nature vol. 385, Jan. 30, 1997, pp. 420-423. |
Control of crystal phase switching and orientation by soluble mollusc-shell proteins by A.M. Belcher; Nature, vol. 381, Ma 2, 1996; pp. 56-58. |
Molecular Cloning and Characterization of Lustrin A, a Matrix Protein from Shell and Pearl Nacre of Halliotis refuscens b Xueyu Shen, et al.; The Journal of Biological Chemistry; vol. 272, No. 51, Dec. 19, 1997; pp. 32472-32481. |
Design, Characterization, and Processing of Hybrid Organic-Inorganic Coatings with Very High Second-Order Optical Nonlinerarities by B. Lebeau, et al.; Chem. Mater. 1997, 9, pp 1012-1020. |
Liquid-crystalline phase as templates for the synthesis of mesoporous silica by George S. Attard, et al.; Letters to Nature, vol. 378, Nov. 23, 1995, pp. 366-368. |
Synthesis and characterization of inorganic gels in a lyotropic liquid crystal medium, Part 2—Syntehsis of silica gels in lyotrpic crystal phases obtained from cationic surfactants by Thierry Dabadie, et al.; J. Mater. Chem., 1996, 6(11), pp. 1789-1794. |
Organically Modified Aluminosilicate Mesostructures from Block Copolymer Phases by Markus Templin, et al.; www.sciencemag.org, Science, vol. 278, Dec. 5, 1997; pp. 1795-1798. |
Hybrid Nanocomposite Materials—Between Inorganic Glasses and Organic Polymers by Bruce M. Novak; Advanced Materials, 1993, 5, No. 6, pp. 422-433. |
Manganese Oxide Mesoporous Structures: Mixed Valent Semiconducting Catalysts by Zheng-Rong Tian, et al.; Science, V 276, May 9, 1997, www.sciencemag.org; pp. 926-930. |
Mesoporous Alumina Molecular Sieves by Stephen A. Bagshaw, Angew, Chem. Int. Ed. Engl. 1996, 35, No. 10; pp. 1102-1105. |
Synthesis of Hexagonally Packed Mesoporous TiO2 by a Modified Sol—Gel Method by David M. Antonelli; Angew Chem. Int. Ed. Engl. 1995, 34, No. 18, pp. 2014-2017. |
A 28-year-old synthesis of micelle-templated mesoporous silica by Francesco Di Renzo, et al., Microporous Materials 10 (1997), pp. 283-286. |
Preparation of porous hafnium oxide in the presence of a cationic surfactant by Ping Liu, et al.; Chem. Commun., 1997, pp. 577-578. |
Mesoporous Platinum Films from Lyotropic Liquid Crystalline Phases by George S. Attard, et al.; www.sciencemag.org, Science, vol. 278, Oct. 31, 1997, pp. 838-840. |
Mesoporous phases based on SnO2 and TiO2 by N. Ulagappan, et al.; Chem. Commun., 1996, pp. 1685-1686. |
Semiconducting superlattices templated by molecular assemblies by Paul V. Braun, et al.; Nature; vol. 380, Mar. 28, 1996 pp. 325-328. |
Amphoteric surfactant templating route for mesoporous zirconia by Anthony Kim et al., Chem. Commun., 1997, pp. 161-1. |
Mesoporous zirconia obtained with anionic templates by G. Pacheco, et al.; Chem. Commun., 1997, pp. 491-492. |
Syntheses of mesoporous zirconia with anionic surfactants by G. Pacheco, et al.; J. Mater. Chem., 1998, 8(1), pp. 216-226. |
Preparation and Characterization of Mesoporous, High Surface Area Zirconium(iv) Oxides by James Knowles, et al.; J. Chem. Soc., Chem. Commun., 1995, pp. 2083-2084. |
Preparation and catalytic testing of mesoporous sulfated zirconium dioxide with partially tetragonal wall structure by Yin-Yan Huang, et al.; Applied Catalysis A: General 148 (1996), pp. 135-154. |
Non-silica periodic mesostructured materials: recent progress by Abdelhamid Sayari, et al.; Micriporous Materials 12 (1997) pp. 149-177. |
Synthesis and Characterization of Hexagonally Packed Mesoporous Tantalum Oxide Molecular Sieves by David M. Anton, Chem.Mater. 1996, 8, pp. 874-881. |
U. Ciesla, St. Schacht, G.D. Stucky, K. Unger, F. Schüth, “Formation of a Porous Zirconium Oxo Phosphate with a High Surface Area by a Surfactant-Assisted Synthesis,” Angew. Chem. Int. Ed. Engl. 35(5):541-543 (1996). |