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124. A. D. Stroock, M. Week, D. T. Chiu, W. T.S. Huck, P. J.A. Kenis, R. F. Ismagilov and G. M. Whitesides, Patterning electro-osmotic flow with patterned surface charge, Phys. Rev. Lett., 2000, 84, 3314.

125. P. D. Yang, G. Wirnsberger, H. C. Huang, S. R. Cordero, M. D. McGehee, B. Scott, T. Deng, G. M. Whitesides, B. F. Chmelka, S. K. Buratto and G. D. Stucky, Mirrorless lasing from mesostructured waveguides patterned by soft lithography, Science, 2000, 287, 465.

126. B. J. Scott, G. Wirnsberger and G. D. Stucky, Mesoporous and mesostructured materials for optical applications, Chem. Mater., 2001, 13, 3140.

127. D. A. Doshi, N. K. Huesing. M. C. Lu, H. Y. Fan, Y. F. Lu, K. Simmons-Potter, B. G. Potter, A. J. Hurd and C. J. Brinker, Optically denned multifunctional patterning of photosensitive thin-film silica mesophases, Science, 2000. 290, 107.

128. H. Y. Fan, Y. F. Lu, A. Stump, S. T. Reed, T. Baer, R. Schunk, V. Perez-Luna, G. P. Lopez and C. J. Brinker, Rapid prototyping of patterned functional nanostructures, Nature, 2000, 405, 56.

129. P. D. Yang, D. Y. Zhao, D. I. Margolese, B. F. Chmelka and G. D. Stucky, Generalized syntheses of large-pore mesoporous metal oxides with semi-crystalline frameworks, Nature, 1998, 396, 152.

130. Т. Sun and J. Y. Ying, Synthesis of microporous transition-metal-oxide molecular sieves by a supramolecular templating mechanism. Nature, 1997, 389, 704.

131. G. S. Attard, C. G. Goltner, J. M. Corker, S. Henke and R. H. Templer, Liquid-crystal templates for nanostructured metals, Angew. Chem. Int. Ed., 1997, 36, 1315.

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132. G. S. Attard. P, N. Bartlett, N. R.B. Coieman, J. M. Elliott, J. R. Owen and J. H. Wang, Mesoporous platinum films from lyotropic liquid crystal line phases. Science, 1997, 278, 838.

133. A. H. Whitehead, J. M. Elliott, J. R. Owen and G. S. Attard, Electro-deposition of mesoporous thin films, mun., 1999, 4, 331.

134. A. Stein, M. Fendorf, T. P. Jarvie, K..T. Mueller, A. J. Benesi and Т. Е. Mallouk, Salt-gel synthesis of porous transition-metal oxides, Chem. Mater., 1995, 7, 304.

135. B. T. Holland, P. K. Isbestcr, C. F. Blanford, E. J. Munson and A. Stein, Synthesis of ordered aluminophosphate and galloaluminophosphate mesoporous materials with anion-exchange properties utilizing polyoxometalate cluster/surfactant salts as precursors, J. Am. Chem. Soc, 1997, 119, 6796.

136. C. J. Brinker, Sol-gel processing of silica, Colloid Chem. Silica; Adv. Chem. Ser., 1994, 234, 361.

137. S. A. Bagshaw, E. Prouzet and T. J. Pinnavaia, Templating of mesoporous molecular-sieves by nonionic polyethylene oxide surfactants, Science, 1995,269, 1242.

138. n and J. Y. Ying, Synthesis of microporous transition metal oxide molecular sieves with bifunctional templating molecules, Angew. Chem. int. Ed., 1998, 37, 664.

139. M. J. MacLachlan, N. Coombs and G. A. Ozin, Non-aqueous supramolecular assembly of mesostructured metal germanium sulphides from (Ge4S10)4" clusters, Nature, 1999, 397. 681.

140. M. Mamak, N. Coombs and G. Ozin, Self-assembling solid oxide fuel cell materials: mesoporous yttria—zirconia and metal-yttria—zirconia solid solutions, J. Am. Chem. Soc, 2000, 122, 8932.

141. C. Sanchez, B. Lebeau, F. Chaput and J. P. Boilot, Optical properties of functional hybrid organic-inorganic nanocomposites. Adv. Mater., 2003, 15, 1969.

142. P. T. Tanev, M. Chibwe and T. J. Pinnavaia, Titanium-containing mesoporous molecular-sieves for catalytic-oxidation of aromatic-compounds. Nature, 1994,368, 321.

143. M. Valden, X. Lai and D. W. Goodman, Onset of catalytic activity of gold clusters on titania with the appearance of nonmetallic properties. Science, 1998, 281, 1647.

144. R. J.P. Corriu and D. Leclercq, Recent developments of molecular chemistry for sol-gel processes, Angew. Chem. Int. Ed. 1996. 35, 1420.

145. S. L. Burkett, S. D. Sims and S. Mann, Synthesis of hybrid inorganic-organic mesoporous silica by co-condensation of siloxane and organosi-loxane precursors, num., 1996, 11, 1367.

146. U. Schubert, N. Husing and A. Lorenz, Hybrid inorganic-organic materials by sol-gel processing of organofunctional metal alkoxides Chem. Mater., 1995. 7, 2010.

147. X. Feng, G. E. Fryxell, L.-Q. Wang, A, Y. Kim, J. Liu and K. M. Kemner, Functionalized monolayers on ordered mesoporous supports. Science 1997, 276. 923.

148. D. S. Shephard, W. Zhou. T. Maschmeyer, J. M. Matters, C. L. Roper, S. Parsons, B. F.G. Johnson and M. J. Duer, Site-directed surface deri-vatization of MCM-41: use of high-resolution transmission electron microscopy and molecular recognition for determining the position of functionality within mesoporous materials, Angew. Chem. Int. Ed., 1998, 37, 2719.

149. M. H. Lim and A. Stein, Comparative studies of grafting and direct syntheses of inorganic-organic hybrid mesoporous materials. Chem. Mater., 1999. 11, 3285.

150. M. H. Lim, C. F. Blanford and A. Stein, Synthesis and characterization of a reactive vinyl-functionalized MCM-41: probing the internal pore structure by a bromination reaction, J. Am. Chem. Soc, 1997, 119, 4090.

151. M. H. Lim, C. F. Blanford and A. Stein, Synthesis of ordered microporous silicates with organosulfur surface groups and their applications as solid acid catalysts, Chem. Mater., 1998, 10, 467.

152. D. E. De Vos. M. Dams, B. F. Sels and P. A. Jacobs, Ordered mesoporous and microporous molecular sieves functionalized with transition metal complexes as catalysts for selective organic transformations, Chem. Rev., 2002, 102, 3615.

153. D. A. Loy and K. J. Shea, Bridged polysilsesquioxanes. Highly porous hybrid organic-inorganic materials, Chem. Rev., 1995, 95, 1431.

154. T. Asefa, M. J. MacLachlan, N. Coombs and G. A. Ozin, Periodic mesoporous organosilicas with organic groups inside the channel walls, Nature, 1999, 402, 867; С Yoshina-Jshii, T. Asefa, N. Coombs, M. J. MacLachlan and G. A. Ozin, Periodic mesoporous organosilicas, PMOs: fusion of organic and inorganic chemistry 'inside' the channel walls of hexagonal mesoporous silica, mun., 1999, 24, 2539.

155. S. Inagaki, S. Guan, Y. Fukushima, T. Ohsuna and O. Terasaki, Novel mesoporous materials with a uniform distribution of organic groups and inorganic oxide in their frameworks. J. Am. Chem. Soc, 1999, 121, 9611.

156. B. J. Melde, B. T. Holland, C. F. Blanford and A. Stein, Mesoporous sieves with unified hybrid inorganic/organic frameworks, Chem. Mater., 1999, U, 3302.

157. S. Inagaki, S. Guan, T. Ohsuna and O. Terasaki, An ordered mesoporous organosilica hybrid material with a crystal-like wall structure, Nature, 2002, 416, 304.

158. Y. Meng, D. Gu, F. Zhang, Y. Shi. H. Yang, Y. Li, C. Yu, B. Tu and D. Zhao, Templated Self Assembly of Mesoporous Polymers and their Direct Transformation to Mesoporous Carbons, Angew. Chem. Int. Ed., 2005, 44, 2-8.

159. S. Jun, S. H. Joo, R. Ryoo, M. Kruk, M. Jaroniec, Z. Liu, T. Ohsuna and O. Terasaki, Synthesis of new, nanoporous carbon with hexagonally ordered mesostructure, J. Am. Chem. Sac, 2000, 122, 10712.

160. J. Lee, S. Yoon, S. M. Oh, C. H. Shin and T. Hyeon, Development of a new mesoporous carbon using an HMS aluminosilicate template, Adv. Mater., 2000, 12, 359.

161. E. S. Lee, S. H. Joo and R. Ryoo, Synthesis of mesoporous silicas of controlled pore wall thickness and their replication to ordered nanoporous carbons with various pore diameters, J. Am. Chem. Soc, 2002, 124, 1156.

162. R - Ryoo, S. H. Joo, M. Kruk and M. Jaroniec, Ordered mesoporous carbons. Adv. Mater., 2001, 13, 677.

163. T. W. Kim, I. S. Park and R. Ryoo, A synthetic route to ordered mesoporous carbon materials with graphitic pore walls, Angew. Chem. Int. Ed., 2003, 42, 4375.

164. S. H. Joo, S. J. Choi, I. Oh, J. Kwak, Z. Liu, O. Terasaki and R. Ryoo, Ordered nanoporous arrays of carbon supporting high dispersions of platinum nanoparticles. Nature, 2001, 412, 169.

165. M. Kruk, M. Jaroniec, C. H. Ко and R. Ryoo, Characterization of the porous structure of SBA-15, Chem. Mater., 2000, 12, 1961.

166. R. Ryoo, S. Jun, J. M. Kim and M. J. Kim, Generalized route to the preparation of mesoporous metallosilicates via post-synthetic metal implantation, mun., 1997, 22, 2225.

167. P. Sozzani, S. Bracco, otti, R. Simonutti, P. Valsesia, Y. Sakamoto and O. Terasaki, Complete shape retention in the transformation of silica to polymer micro-objects, Nat. Mater., 2006, 5, 545-551.

168. A. Davidson, Modifying the walls of mesoporous silicas prepared by supramolecular-templating, Curr. Opin. Colloid Interface Set., 2002, 7, 92.

169. S. Y. Choi, M. Mamak, N. Coombs, N. Chopra and G. A. Ozin, Thermally stable two-dimensional hexagonal mesoporous nanocrystalline anatase, meso-nc-TiO2: bulk and crack-free thin film morphologies. Adv. Fund. Mater., 2004, 14, 335.

170. T. A. Ostomel and G. D. Stucky, Free-standing mesoporous titania films with anatase nanocrystallites synthesized at 80 degrees C, mun., 2004,8, 1016.

171. T. Kimura, H. Tamura, M. Tezuka, D. Mochizuki, T. Shigeno, T. Ohsuna and K. Kuroda, Design of molecularly ordered framework of mesoporous silica with squared one-dimensional channels, J. Amer. Chem. Soc, 2008, 130(1), 201-209.

172. G. A. Ozin, E. Chomski, D. Khushalani and M. J. Maclachlan, Meso-chemistry, Curr. Opin. Colloid Interface Sci., 1998, 3, 181.

173. K. Moller and T. Bein, Inclusion chemistry in periodic mesoporous hosts, Chem. Mater., 1998, 10, 2950.

174. A. Stein, B. J. Melde and R. C. Schroden, Hybrid inorganic-organic mesoporous silicates. Nanoscopic reactors coming of age. Adv. Mater., 2000, 12, 1403.

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