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Synthesis of Nanostructured Materials in Near and/or Supercritical Fluids: Methods, Fundamentals and Modeling: Supercritical Fluid Science and Technology, cartea 8

Autor Can Erkey, Michael Turk
en Limba Engleză Paperback – 30 noi 2021
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
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Specificații

ISBN-13: 9780444640895
ISBN-10: 0444640894
Pagini: 282
Dimensiuni: 152 x 229 mm
Greutate: 0.38 kg
Editura: ELSEVIER SCIENCE
Seria Supercritical Fluid Science and Technology


Public țintă

Chemical engineers, materials scientists, chemists and physicists from both, academia and industry. The book could be used for a graduate level course on supercritical fluids.

Cuprins

1. Introduction 2. Compounds of interest 3. Fundamental aspects of pure supercritical fluids 4. Thermodynamics of mixtures of metal complexes with supercritical fluids 5. Thermodynamic and kinetic of adsorption of metal complexes on substrates from supercritical solutions 6. Synthesis of nanostructured composites of metals by Supercritical Fluid Reactive Deposition (SFRD) 7. Synthesis of metal-oxide nanoparticles / films 8. Modeling of Particle Formation in Supercritical Fluids 9. Future Research Needs and Developments