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Advanced Catalysts and Nanostructured Materials: Modern Synthetic Methods
 
 
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Advanced Catalysts and Nanostructured Materials: Modern Synthetic Methods [Hardcover]

William R. Moser (Editor)

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Book Description

November 4, 1996 0125084609 978-0125084604 1
The time has come for an assessment of the most important techniques for the fabrication of advanced catalysts. Catalyst production alone is more than a billion dollar business each year, and the product value of chemical processes using advanced catalysts is a few trillion dollars annually. This book seeks to provide a modern, materials science account of the best and most current techniques for the synthesis of advanced catalytic materials.
Until now, there has been no single book which contains a definitive and comprehensive description of the important technologies for catalyst synthesis within the context of modern materials science. Academic researchers both in the catalytic sciences and materials sciences must have the best synthesis technologies available to accomplish the preparation of solid-state materials of specific structure and morphology. Althugh the emphasis is on new synthetic techniques for catalytic applications, the bookpresents all of the important technologies for the fabrication of electronic and structural ceramics, and superconductors.

Key Features
* Novel Techniques for Advanced Materials
* Nanostructured Materials Synthesis
* Mesoporous Molecular Sieves
* Pillared Clays
* Heteropoly Acids
* Nanostructured Supported Metal Catalysts
* Nanostructured Metal Oxide Catalysts and Materials
* Nanostructured Zeolite Materials
* Vapor Phase Materials Synthesis
* Sonochemical Materials Synthesis
* Aerosol Methods of Catalyst Synthesis
* Hydrodynamic Cavitational Techniques for Catalyst and Materials Synthesis
* Novel Sol-Gel Methods for Catalyst Synthesis
* Supercritical Methods for Materials Synthesis
* Liquid Crystal Techniques for Mesoporous Materials
* Micelle Techniques for Nanostructured Catalyst Preparation
* Fluidized Bed Techniques in Chemical Vapor Deposition
* Flame Methods of Advanced Catalyst Synthesis

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Editorial Reviews

From the Back Cover

For the discovery of more efficient catalysts, and the continued competitiveness of those now in use, the multrillion dollar chemical process industries must keep current on the best available technologies for advanced materials synthesis. This book is the first comprehensive review of the latest techniques for the preparation of solid-state materials of specific structure and morphology. Although catalytic applications are emphasized, the technologies are equally relevant to general research on the materials science aspects of advanced electronic and structural ceramics, including the design and engineered synthesis of nanostructured materials. Researchers in both academia and industry will find Advanced Catalysts and Nanostructured Materials: Modern Synthetic Methods to be an authoritative source of information on state-of-the-art technologies for advanced materials synthesis.

About the Author

Professor William Moser is a Professor of Chemical Engineering at the Worcester Polytechnic Institute. He is also a member of the Center for Inorganic Membrane Studies at WPI. Professor Moser invented both the Cylindrical Internal Reflectance Reactors (CIR-REACTORS) and Optical Fiber coupled CIR-Reactors (OFCIR-REACTORS), which are now commercial products used for reaction monitoring in homogeneous and heterogeneous catalysis. He was recently issued a patent on remote infrared sensing using optical fiber cables connected to high pressure reactors as well as normal laboratory glassware reactors. Dr. Moser is a Fellow of the New York Academy of Sciences, and is a co-founder of the Organic Reactions Catalysis Society. He is a past Chairman of the ACS Petroleum Division. He is the editor of several books on homogeneous and heterogeneous catalysis, and has a variety of publications and patents in the catalytic and materials science fields.


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Inside This Book (learn more)
First Sentence:
The use of cationic surfactants as structure-directing agents has resulted in the discovery of M41S, the first, ordered mesoporous molecular sieves [Kresge et al., 1992; Beck et al., 1992]. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
cavitational synthesis, mullite honeycomb, peripheral metal atoms, cavitational heating, equilibrated catalyst, nanocrystalline catalysts, heteropoly oxometalates, zeolite nanoclusters, borosilicate molecular sieve, crystal phase composition, zirconia sulfate, prehydrolysis time, hydrolyzed dimers, nanometer clusters, bed reactor applications, benzene isotherms, diffusion flame burner, advanced catalysts, nanostructured grains, zeolite nanoparticles, fractional substitution, honeycomb catalysts, pillaring process, amorphous zirconia, aerosol reactor
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, Academic Press, Elsevier Science, Nanostructured Materials All, The Netherlands, Colloid Interface Sci, Materials Research Society, Sara Burgerhartstraat, American Chemical Society, Clays Clay Miner, Faraday Trans, Solid State Chem, Symposium Proceedings, Aerosol Sci, Energy Fuels, Symposium Series, University of Aachen, Department of Energy, Langford Lane, New Jersey, Colloids Surf, Johnson Matthey, Microporous Metal-Oxygen Cluster Compounds, National Science Foundation, Pure Appl
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