By S.B. McCullen, J.C. Vartuli, C.T. Kresge, W.J. Roth, J.S. Beck, K.D. Schmitt (auth.), Thomas J. Pinnavaia, M. F. Thorpe (eds.)
This sequence of books, that's released on the cost of approximately one consistent with 12 months, addresses basic difficulties in fabrics technological know-how. The contents conceal a vast diversity of issues from small clusters of atoms to engineering fabrics and contain chemistry, physics, and engineering, with size scales starting from Ångstromsup to millimeters. The emphasis is on simple technology instead of on purposes. every one publication specializes in a unmarried sector ofcurrent curiosity and brings jointly major specialists to offer an up to date dialogue in their paintings and the paintings ofothers. each one article comprises sufficient references that the reader can accesstherelevant literature. thank you aregiven to the heart forFundamental fabrics study atMichigan nation collage forsupportingthis sequence. M.F. Thorpe, sequence Editor e mail: email@example.com EastLansing,Michigan, September, 1995 PREFACE This publication files chosen papers given at an interdisciplinary Symposium on entry in Nanoporous fabrics held in Lansing, Michigan, on June 7-9, 1995. wide curiosity within the synthesis of ordered fabrics with pore sizes within the 1.0-10 nm diversity used to be essentially manifested within the sixty four invited and contributed papers offered through employees within the formal fields of chemistry, physics, and engineering. The reason of the symposium was once to collect a small quantity ofleading researchers inside of complementary disciplines to proportion within the variety of methods to nanoporous fabrics synthesis and characterization.
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Inagaki, Y. Fukushima, and K. Kuroda, Synthesis of Highly ordered mesoporous materials from a layered polysilicate, J. Chem. Soc. Chem. Commun. 8: 680 (1993). 23. A. Monnier, F. Schüth, Q. Huo, D. Kumar, D. S. D. Stucky, M. Krishnamurty, P. Petroff, A. Firouzi, M. F. Chmelka, Cooperative formation of inorganic-organic interfaces in the synthesis of silicate mesostructures, Science 261: 1299 (1993). 24. Q. I. Margolese, U. Ciesla, P. Feng, T. Gier, P. Sieger, R. M. Petroff, F. D. Stucky, Generalized synthesis of periodic surfactant/inorganic composite materials, Nature 368: 317 (1994).
Gnep, P. Roger, P. Cartrand, M. Guisnet, B. Juguin, C. Hamon, Creation of mesopores in monodimentional zeolites. A way of improving their catalytic stability, C. R. Acad. , Ser . 2: 309: 1743 (1989); B. Chauvin, F. Fajula, F. Figueras, C. Gueguen, and J. Bousquet, Sorption properties of zeolite omega, J. Catal. 111: 94 (1988). 32. M. Taramasso, G. Perego, and B. S. Patent 4,410,501( 1983). 33. T. L. H. Olson, Structure of synthetic zeolite ZSM-5, Nature 272: 437 (1978). 34. C. Huybrechts, L. A.
A way of improving their catalytic stability, C. R. Acad. , Ser . 2: 309: 1743 (1989); B. Chauvin, F. Fajula, F. Figueras, C. Gueguen, and J. Bousquet, Sorption properties of zeolite omega, J. Catal. 111: 94 (1988). 32. M. Taramasso, G. Perego, and B. S. Patent 4,410,501( 1983). 33. T. L. H. Olson, Structure of synthetic zeolite ZSM-5, Nature 272: 437 (1978). 34. C. Huybrechts, L. A. Jacobs, Oxyfunctionalization of alkanes with hydrogen peroxide on titanium silicalite, Nature 345: 240 (1990). 35.
Access in Nanoporous Materials by S.B. McCullen, J.C. Vartuli, C.T. Kresge, W.J. Roth, J.S. Beck, K.D. Schmitt (auth.), Thomas J. Pinnavaia, M. F. Thorpe (eds.)
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