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6. S. Polarz and M. Antonietti, Porous materials via nanocasting procedures: innovative materials and learning about soft-matter organization, mun., 2002, 22, 2593.
7. K. J.C. van Bommel, A. Friggeri and S. Shinkai, Organic templates for the generation of inorganic materials, Angew. Chem. Int. Ed., 2003, 42, 980.
8. H. A. Lowenstam, Minerals formed by organisms, Science, 1981, 211, 1126.
9. R. M. Barrer, Zeolite synthesis: an overview, NATO ASI Ser. C: Math. Phys. Sci. (Surf. Organomet. Chem.: Mol. Approaches Surf. CataL), 1988, 231, 221.
10. S. Mann, Biomimetlc Materials Chemistry, VCH, New York, NY, 1996.
11. D. W. Breck, Zeolite Molecular Sieves: Structure. Chemistry, and Use, Wiley-Interscience, New York, NY, 1974.
12. R. L. Bedard, L. D. Vail, ST. Wilson and E. M. Flanigen, Crystalline micro-porous metal sulfide compositions, US Patent 4, 880. 761.
13. H. Ahari, C. L. Bowes, T. Jiang. A. Lough, G. A. Ozin, R. L. Bedard, S. Petrov and D. Young. Nanoporous tin(IV) chalcogenides. Flexible open-framework nanomaterials for chemical sensing, Adv. Mater., 1995, 7, 375.
14. Т. Jiang, A. J. Lough, G. A. Ozin, D. Young and R. L. Bedard, Synthesis and structure of the novel nanoporous tin(IV) sulfide material TPA-SNS-3 Chem. Mater., 1995, 7, 245.
15. C. W. Jones, K. Tsuji and M. E. Davis, Organic-functionalized molecular sieves as shape-selective catalysts. Nature, 1998, 393, 52.
16. M. Eddaoudi, D. B. Moler, H. Li, B. Chen, T. M. Reineke, M. O'Keeffe and O. M. Yaghi, Modular chemistry: secondary building units as a basis for the design of highly porous and robust metal-organic carboxylate frameworks, Ace. Chem. Res., 2001, 34, 319.
17. O. M. Yaghi, M. O'Keeffe, N. W. Ockwig, H. K. Chae, M. Eddaoudi and J. Kim, Reticular synthesis and the design of new materials, Nature, 2003 423, 705.
18. C. L. Bowes and G. A. Ozin, Self-assembling frameworks: beyond micro-porous oxides. Adv. Mater., 1996, 8, 13.
19. M. Eddaoudi, D. B. Moler, H. L. Li, B. L. Chen, T. M. Reineke, M. O'Keeffe and O. M. Yaghi, Modular chemistry: secondary building units as a basis for the design of highly porous and robust metal-organic carboxylate frame-works, Ace. Chem. Res., 2001, 34, 319.
20. N. F. Zheng, X. H. Bu and P. Y. Feng, Synthetic design of crystalline inorganic chalcogenides exhibiting fast-ion conductivity, Nature, 2003, 426, 428.
21. S. T. Batten and R. Robson, Interpenetrating nets: ordered, periodic entanglement, Angew. Chem. Int. Ed., 1998, 37, 1460.
22. D. T. Tran, P. Y. Zavalij and S. R.J. Oliver, Pb3F5NO,, a cationic layered material for anion-exchange, J. Am. Chem. Soc., 2002, 124, 3966.
23. J. S. Seo, D. Whang, H. Lee, S. I. Jun, J. Oh, Y. J. Jeon and K. Kim, A homochiral metal-organic porous material for enantioselective separation and catalysis. Nature, 2000, 404, 982.
24. O. M. Yaghi, G. Li and H. Li, Selective binding and removal of guests in a microporous metal-organic framework, Nature, 1995, 378, 703.
25. N. L. Rosi, J. Eckert, M. Eddaoudi, D. T. Vodak, J. Kim, M. O'Keeffe and O. M. Yaghi, Hydrogen storage in microporous metal-organic frameworks. Science, 2003, 300, 1127.
26. J. L.C. Rowsell, A. R. Millward, K. S. Park and O. M. Yaghi, Hydrogen sorption in functionalized metal-organic frameworks, J. Am. Chem. Soc, 2004, 126, 5666.
27. Y. P. Zhou, K. Feng, n and L. Zhou, A brief review on the study of hydrogen storage in terms of carbon nanotubes, Prog. Chem., 2003, 15, 345.
28. M. Eddaoudi, J. Kim, N. Rosi, D. Vodak, J. Wachter, M. O'Keefe and O. M. Yaghi, Systematic design of pore size and functionality in isoreticular MOFs and their application in methane storage, Science, 2002, 295, 469.
29. H. M. El-Kaderi, J. R. Hunt, J. L. Mendoza-Cortes, A. P. Cote, R. E. Taylor, M. O'Keeffe and O. M. Yaghi, Designed synthesis of 3D covalent organic frameworks. Science, 2007, 316, 268.
30. A. Corma, State of the art and future challenges of zeolites as catalysts, J. Calal., 2003, 216, 298.
31. S. Bhatia. Zeolite Catalysis: Principles ami Applications, CRC Press, Boca Raton, FL, 1990.
32. Т. Е. Gier, X. H. Bu, P. Y. Feng and G. D. Stucky, Synthesis and organization of zeolite-like materials with three-dimensional helical pores, Nature, 1998,395, 154.
33. M. O. Adebajo, R. L. Frost, J. T. Kloprogge, O. Carmody and S. Kokot, Porous materials for oil spill cleanup: a review of synthesis and absorbing properties, J. Porous Mater., 2003, 10, 159.
34. D. Kallo, Applications of natural zeolites in water and wastewater treatment. Rev. Miner. Geochem., 2001, 45, 519.
35. C. T. Kresge, M. E. Leonowicz, W. J. Roth, J. C. Vartuli and J. S. Beck, Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism, Nature, 1992, 359, 710.
36. J. S. Beck, J. C. Vartuli, W. J. Roth, ME. Leonowicz, C. T. Kresge, K. D. Schmitt, C. T.W. Chu, D. H. Olson, E. W. Sheppard, S. B. McCullen, J. B. Higgins and J. L. Schlenker, A new family of mesoporous molecular sieves prepared with liquid crystal templates, J. Am. Chem. Soc, 1992, 114, 10834.
37. Y. H. Sakamoto, M. Kaneda, O. Terasaki, D. Y. Zhao, J. M. Kim, G. Stucky, H. J. Shim and R. Ryoo, Direct imaging of the pores and cages of three-dimensional mesoporous materials, Nature, 2000, 408, 449.
38. S. Hafner and D. E. Demco, Solid-state NMR spectroscopy under periodic modulation by fast magic-angle sample spinning and pulses: a review. Solid State NMR, 2002, 22, 247.
39. A. Firouzi, D. Kumar, L. M. Bull, T. Besier, P. Sieger, Q. Huo, S. A. Walker, J. A. Zasadzinski, С Glinka, J. Nicol, D. Margolese, G. D. Stucky and B. F. Chmelka, Cooperative organization of inorganic-surfactant and bio-mimetic assemblies, Science, 1995, 267, 1138.
40. Q. S. Huo, D. I. Margolese, U. Ciesla, P. Y. Feng, Т. Е. Gier, P. Sieger, R. Leon, P. M. Petroff, F. Schuth and G. D. Stucky, Generalized synthesis of periodic surfactant inorganic composite-materials. Nature, 1994, 368.317.
41. Y. Bouligand, Mesoporous solids of biological interest. Actualite Chim. 2003, 7, 4.
42. N. Coombs, D. Khushalani, S. Oliver, G. A. Ozin, G. C. Shen, I. Sokolov and H. Yang, Blueprints for inorganic materials with natural form: inorganic liquid crystals and a language of inorganic shape, J. Chem. Soc. Dalton Trans., 1997,21,3941.
43. H. Yang, N. Coombs, I. Sokolov and G. A. Ozin, Free-standing and oriented mesoporous silica films grown at the air-water interface. Nature, 1996,381, 589.
44. S. Schacht, Q. Huo, I. G. Voigt-Martin, G. D. Stucky and F. Schuth, Oil-water interface templating of mesoporous macroscale structures, Science, 1996. 273, 768.
45. H. Yang, A. Kuperman, N. Coombs, S. Mamiche-Afara and G. A. Oin. Synthesis of oriented films of mesoporous silica on mica, Nature, 1996, 379, 703.
46. I. A. Aksay, M. Trau, S. Manne. I. Honma, N. Yao, L. Zhou, P. Fcnter. P. M. Eisenberger and S. M. Gruner, Biomimetic pathways for assembling inorganic thin films, Science, 1996, 273, 892.
47. S. Pevzner, O. Regev and R. Yerushalmi-Rozen, Thin films of mesoporous silica: preparation and characterization, Curr. Opin. Colloid Interface Sci., 1999, 4, 420.
48. C. J. Brinker, Oriented inorganic films, Curr. Opin. Colloid Interface Sci., 1998, 3, 166.
49. J. E. Martin, M. T. Anderson, J. Odinek and P. Newcomer, Synthesis of periodic mesoporous silica thin films, Langmuir, 1997, 13, 4133.
50. Y. Lu, R. Ganguli, С A. Drewien, M. T. Anderson, C. J. Brinker, W. Gong, Y. Guo, H. Soyez, B. Dunn, M. H. Huang and J. I. Zink, Continuous formation of supported cubic and hexagonal mesoporous films by sol-gel dip-coating, Nature, 1997, 389, 364.
51. D. Zhao, P. Yang, N. Melosh, J. Feng, B. F. Chmelka and G. D. Stucky, Continuous mesoporous silica films with highly ordered large pore structures, Adv. Mater., 1998, 10, 1380.
52. I. Honma, H. S. Zhou, D. Kundu and A. Endo, Structural control of surfactant-templated hexagonal, cubic, and lamellar mesoporous silicate thin films prepared by spin-casting, Adv. Mater., 2000, 12, 1529.
53. C.-M. Yang, A.-T. Cho, F.-M. Pan, T.-G. Tsai and K.-J. Chao, Spin-on mesoporous silica films with ultralow dielectric constants, ordered pore structures, and hydrophobic surfaces. Adv. Mater., 2001, 13, 1099.
54. D. Blaudez, T. ButTeteau, B. Desbat and J. M. Turlet, Infrared and Raman spectroscopies of monolayers at the air-water interface, Curr. Opin. Colloid Interface Sci., 1999, 4, 265.
55. J. A. Zasadzinski, R. Viswanathan, L. Madsen, J. Garnaes and D. K. Schwartz, Langmuir-Blodgett-films, Science, 1994, 263, 1726.
56. S. Manne, J. P. Cleveland, H. E. Gaub, G. D. Stucky and P. K. Hansma, Direct visualization of surfactant hemimicelles by force microscopy of the electrical double layer, Langmuir, 1994, 10, 4409.
57. S. Manne and H. E. Gaub, Molecular organization of surfactants at solid-liquid interfaces, Science, 1995, 270, 1480.
58. H. Yang, N. Coombs, I. Sokolov and G. A. Ozin, Free-standing and oriented mesoporous silica films grown at the air-water interface, Nature, 1996. 381, 589.
59. S. H. Tolbert, A. Firouzi, G. D. Stucky and B. F. Chmelka, Magnetic field alignment of ordered silicate-surfactant composites and mesoporous silica, Science, 1997, 278, 264.
60. P. Poulin, Novel phases and colloidal assemblies in liquid crystals, Curr. Opin. Colloid Interface Sci., 1999, 4, 66.
61. H. Yang, N. Coombs and G. A. Ozin, Thickness control and defects in oriented mesoporous silica films, J. Mater. Chem., 1998, 8, 1205.
62. С. Noel, Defects and textures in nematic MCLCPs. Ada Polym., 1997, 48, 335.
63. S. D. Hudson, High resolution transmission electron microscopy of liquid crystalline polymers, Curr. Opin. Colloid Interface Sci., 1998, 3, 125.
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