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Molecular Toxinology has been consolidated as a scientific area focused on the intertwined description of several aspects of animal toxins. In an inquiring biotechnological world, animal toxins appear as an invaluable source for the discovery of therapeutic polypeptides. Animal toxins rely on specific chemical interactions with their partner molecule to exert their biological actions. The comprehension of how molecules interact and recognize their target is essential for the rational exploration of bioactive polypeptides as therapeutics. Investigation on the mechanism of molecular interaction and recognition offers a window of opportunity for the pharmaceutical industry and clinical medicine. Thus, this book brings examples of two interconnected themes - molecular recognition and toxinology concerning to the integration between analytical procedures and biomedical applications.
Molecular sieves. --- Chemical engineering --- Drying agents --- Sieves --- Sorbents --- Medical toxicology
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The original properties of mesoporous molecular sieves are so unique that the design of most existing catalysts could be reconsidered. It might indeed be of interest to introduce MMS either as a support or as the active phase, merely on the basis of their high surface areas, narrow pore size distribution and flexibility in composition. The recent literature provides examples of MMS based catalysts of many types such as acid-base solids, supported metals and supported oxides, mixed oxides, anchored complexes and clusters, grafted organic functional groups and others. Examples of all these devel
Molecular sieves --- Chemical engineering --- Drying agents --- Sieves --- Sorbents
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Zeolites --- Molecular sieves --- Chemical engineering --- Drying agents --- Sieves --- Sorbents --- Silicate minerals --- Molecular sieves. --- Zeolites.
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These proceedings, comprising 7 plenary lectures, 100 oral and 175 poster presentations, reflect present activities in the field of microporous materials. The International Zeolite Conferences are devoted to all aspects of zeolite science and technology. The term zeolite is to be understood in its broadest sense comprising all kinds of crystalline microporous materials regardless of their composition (e.g. aluminosilicates and other metallosilicates, silica, aluminophosphates, gallophosphates etc.), occurring in nature or synthesized by man. Mesoporous silica, aluminosilicates and other
Zeolites --- Molecular sieves --- Congresses --- Chemical engineering --- Drying agents --- Sieves --- Sorbents --- Zeolites - Congresses --- Molecular sieves - Congresses
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Biocolloids. --- Protein folding. --- Silica gel. --- Colloids --- Drying agents --- Folding of proteins --- Proteins --- Biochemistry --- Folding --- Conformation
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This proceedings volume contains selected and peer-reviewed original oral and poster contributions to be presented at the 5th International Symposium on Nanoporous Materials, Vancouver, Canada, May 25-28, 2008. It presents recent scientific advances in the area of nanoporous materials, especially those with ordered pores of sizes between 1 and 50 nm, their synthesis, characterization and applications in adsorption, catalysis, bio-related processes, environmental cleanup and nanotechnology. A unique feature of this volume is the wide variety of nanoporous materials covered, ranging from ordered silica nanostructures, silicas with incorporated organic and inorganic species, ordered nanoporous carbons and polymers, metal organic frameworks, nanostructured catalysts to nanoporous films, membranes and monoliths. This proceedings volume reflects the current trends and advances in the field of nanomaterials, which will certainly continue to attract the attention of materials scientists around the globe. It will therefore be a valuable reference for materials scientists, chemists and physicists working in academia, national and industrial laboratories.
Porous materials --- Nanostructured materials --- Silica --- Molecular sieves --- Silicon dioxide --- Oxides --- Silicon compounds --- Chemical engineering --- Drying agents --- Sieves --- Sorbents
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Molecular sieves --- Zeolites --- Porous materials --- Porosity --- Tamis moléculaires --- Zéolites --- Porosity. --- Zeolites. --- Molecular sieves. --- Porosities --- Zeolite --- Silicate minerals --- Chemical engineering --- Drying agents --- Sieves --- Sorbents
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Zeolites --- -Molecular sieves --- -Chemical engineering --- Drying agents --- Sieves --- Sorbents --- Silicate minerals --- Congresses --- Molecular sieves --- Chemical engineering --- Zeolites - Congresses --- Molecular sieves - Congresses
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The first symposium on Access in Nanoporous Materials was held in Lansing, Michigan on June 7-9, 1995. The five years that have passed since that initial meeting have brought remarkable advances in all aspects of this growing family of materials. In particular, impressive progress has been achieved in the area of novel self-assembled mesoporous materials, their synthesis, characterization and applications. The supramolecular self-assembly of various inorganic and organic species into ordered mesostructures became a powerful method for synthesis of mesoporous molecular sieves of tailored framew
Mechanical properties of solids --- Materials sciences --- Porous materials --- Nanostructured materials --- Zeolites --- Silica --- Molecular sieves --- Chemical engineering --- Drying agents --- Sieves --- Sorbents --- Silicon dioxide --- Oxides --- Silicon compounds
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