Synthesis of Nanostructured Materials in Near and/or Supercritical Fluids

Methods, Fundamentals and Modeling

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Éditeur :

Elsevier


Paru le : 2021-11-27



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Description
Synthesis of Nanostructured Materials in Near and/or Supercritical Fluids: Methods, Fundamentals and Modeling offers a comprehensive review of the current status of research, development and insights on promising future directions, covering the synthesis of nanostructured materials using supercritical fluid-based processes. The book presents fundamental aspects such as high-pressure phase behavior of complex mixtures, thermodynamics and kinetics of adsorption from supercritical solutions, mechanisms of particle formation phenomena in supercritical fluid-based processes, and models for further development. It bridges the gap between theory and application, and is a valuable resource for scientists, researchers and students alike. - Includes thermodynamic and mass transfer data necessary for industrial plant design - Explains the mechanisms of reactions in a supercritical fluid environment - Lists numerous industrial processes for the production of many consumer products
Pages
282 pages
Collection
n.c
Parution
2021-11-27
Marque
Elsevier
EAN papier
9780444640895
EAN EPUB SANS DRM
9780444640901

Prix
184,63 €

Can Erkey works in the Department of Chemical and Biological Engineering at Koc University in Istanbul, Turkey.Michael Türk received his Dipl.-Ing. degree in Chemical Engineering from the Universität Karlsruhe (Technische Hochschule). In 1993 M. Türk completed his PhD thesis in the field of thermodynamic properties and intermolecular interactions of binary gaseous mixtures. In his professorial dissertation of 2001 a theory was proposed allowing understanding of the relationship between process conditions and the properties of organic particles produced by supercritical fluid based processes. His current research activities are focused on the use of supercritical fluids (mainly CO2 and H2O) as media to prepare organic, inorganic and metallic materials by physical transformation or chemical reaction and the development of new, energy-efficient and environmentally-friendly strategies to create novel products with extraordinary performance for pharmaceutical, energy and biomedical applications. So far, M. Türk has authored 125 articles (including 13 book chapters); has graduated 20 PhD students (10 as supervisor and 10 as co-advisor) and more than 50 Diploma / Master and 15 Bachelor students.

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