Catherine Bréchignac (ed.) / Philippe Houdy / Marcel Lahmani
Nanomaterials and Nanochemistry
Herausgegeben:Bréchignac, C.; Houdy, P.; Lahmani, M.
Catherine Bréchignac (ed.) / Philippe Houdy / Marcel Lahmani
Nanomaterials and Nanochemistry
Herausgegeben:Bréchignac, C.; Houdy, P.; Lahmani, M.
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Here is a brilliant book that covers the major aspects of nanomaterials production. It integrates the many and varied chemical, material and thermo-dynamical facets of production, offering readers a new and unique approach to the subject. The mechanical, optical, and magnetic characteristics of nanomaterials are also presented in detail. Nanomaterials are a fast developing field of research and this book serves as both a reference work for researchers and a textbook for graduate students.
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Here is a brilliant book that covers the major aspects of nanomaterials production. It integrates the many and varied chemical, material and thermo-dynamical facets of production, offering readers a new and unique approach to the subject. The mechanical, optical, and magnetic characteristics of nanomaterials are also presented in detail. Nanomaterials are a fast developing field of research and this book serves as both a reference work for researchers and a textbook for graduate students.
Produktdetails
- Produktdetails
- Verlag: Springer / Springer Berlin Heidelberg / Springer, Berlin / Éditions Belin
- Originaltitel: Les Nanosciences - Les Nanomatériaux
- Artikelnr. des Verlages: 11743941, 978-3-540-72992-1
- 2007
- Seitenzahl: 780
- Erscheinungstermin: 23. Januar 2008
- Englisch
- Abmessung: 241mm x 160mm x 47mm
- Gewicht: 1336g
- ISBN-13: 9783540729921
- ISBN-10: 3540729925
- Artikelnr.: 22917099
- Verlag: Springer / Springer Berlin Heidelberg / Springer, Berlin / Éditions Belin
- Originaltitel: Les Nanosciences - Les Nanomatériaux
- Artikelnr. des Verlages: 11743941, 978-3-540-72992-1
- 2007
- Seitenzahl: 780
- Erscheinungstermin: 23. Januar 2008
- Englisch
- Abmessung: 241mm x 160mm x 47mm
- Gewicht: 1336g
- ISBN-13: 9783540729921
- ISBN-10: 3540729925
- Artikelnr.: 22917099
Catherine Bréchignac, Centre National de la Recherche Scientifique, France / Philippe Houdy, Université d'Evry, France / Marcel Lahmani, Ministry of Research Nanotechnology Club
Basic Principles and Fundamental Properties.- Size Effects on Structure and Morphology of Free or Supported Nanoparticles.- Structure and Phase Transitions in Nanocrystals.- Thermodynamics and Solid-Liquid Transitions.- Modelling and Simulating the Dynamics of Nano-Objects.- Physical and Chemical Properties on the Nanoscale.- Magnetism in Nanomaterials.- Electronic Structure in Clusters and Nanoparticles.- Optical Properties of Metallic Nanoparticles.- Mechanical and Nanomechanical Properties.- Superplasticity.- Reactivity of Metal Nanoparticles.- Inverse Systems - Nanoporous Solids.- Inverse Systems - Confined Fluids: Phase Diagram and Metastability.- Supramolecular Chemistry: Applications and Prospects.- Nanocomposites: The End of Compromise.- Synthesis of Nanomaterials and Nanoparticles.- Specific Features of Nanoscale Growth.- Gas Phase Synthesis of Nanopowders.- Synthesis of Nanocomposite Powders by Gas-Solid Reaction and by Precipitation.- Colloidal Methods and Shape Anisotropy.- Mechanical Milling.- Supercritical Fluids.- Fabrication of Nanostructured Bulk Materials and Nanoporous Materials.- Bulk Nanostructured Materials Obtained by Powder Sintering.- Self-Assembly of Nanomaterials at Macroscopic Scales.- Assemblies of Magnetic Nanoparticles.- Nanostructured Coatings.- Dispersion in Solids.- Nanoporous Media.- Molecular Imprinting.- Applications of Nanomaterials.- Electronics and Electromagnetism.- Optics.- Mechanics.- Biology and the Environment.
Basic Principles and Fundamental Properties.- Size Effects on Structure and Morphology of Free or Supported Nanoparticles.- Structure and Phase Transitions in Nanocrystals.- Thermodynamics and Solid—Liquid Transitions.- Modelling and Simulating the Dynamics of Nano-Objects.- Physical and Chemical Properties on the Nanoscale.- Magnetism in Nanomaterials.- Electronic Structure in Clusters and Nanoparticles.- Optical Properties of Metallic Nanoparticles.- Mechanical and Nanomechanical Properties.- Superplasticity.- Reactivity of Metal Nanoparticles.- Inverse Systems – Nanoporous Solids.- Inverse Systems – Confined Fluids: Phase Diagram and Metastability.- Supramolecular Chemistry: Applications and Prospects.- Nanocomposites: The End of Compromise.- Synthesis of Nanomaterials and Nanoparticles.- Specific Features of Nanoscale Growth.- Gas Phase Synthesis of Nanopowders.- Synthesis of Nanocomposite Powders by Gas—Solid Reaction and by Precipitation.- Colloidal Methods and Shape Anisotropy.- Mechanical Milling.- Supercritical Fluids.- Fabrication of Nanostructured Bulk Materials and Nanoporous Materials.- Bulk Nanostructured Materials Obtained by Powder Sintering.- Self-Assembly of Nanomaterials at Macroscopic Scales.- Assemblies of Magnetic Nanoparticles.- Nanostructured Coatings.- Dispersion in Solids.- Nanoporous Media.- Molecular Imprinting.- Applications of Nanomaterials.- Electronics and Electromagnetism.- Optics.- Mechanics.- Biology and the Environment.
Basic Principles and Fundamental Properties.- Size Effects on Structure and Morphology of Free or Supported Nanoparticles.- Structure and Phase Transitions in Nanocrystals.- Thermodynamics and Solid-Liquid Transitions.- Modelling and Simulating the Dynamics of Nano-Objects.- Physical and Chemical Properties on the Nanoscale.- Magnetism in Nanomaterials.- Electronic Structure in Clusters and Nanoparticles.- Optical Properties of Metallic Nanoparticles.- Mechanical and Nanomechanical Properties.- Superplasticity.- Reactivity of Metal Nanoparticles.- Inverse Systems - Nanoporous Solids.- Inverse Systems - Confined Fluids: Phase Diagram and Metastability.- Supramolecular Chemistry: Applications and Prospects.- Nanocomposites: The End of Compromise.- Synthesis of Nanomaterials and Nanoparticles.- Specific Features of Nanoscale Growth.- Gas Phase Synthesis of Nanopowders.- Synthesis of Nanocomposite Powders by Gas-Solid Reaction and by Precipitation.- Colloidal Methods and Shape Anisotropy.- Mechanical Milling.- Supercritical Fluids.- Fabrication of Nanostructured Bulk Materials and Nanoporous Materials.- Bulk Nanostructured Materials Obtained by Powder Sintering.- Self-Assembly of Nanomaterials at Macroscopic Scales.- Assemblies of Magnetic Nanoparticles.- Nanostructured Coatings.- Dispersion in Solids.- Nanoporous Media.- Molecular Imprinting.- Applications of Nanomaterials.- Electronics and Electromagnetism.- Optics.- Mechanics.- Biology and the Environment.
Basic Principles and Fundamental Properties.- Size Effects on Structure and Morphology of Free or Supported Nanoparticles.- Structure and Phase Transitions in Nanocrystals.- Thermodynamics and Solid—Liquid Transitions.- Modelling and Simulating the Dynamics of Nano-Objects.- Physical and Chemical Properties on the Nanoscale.- Magnetism in Nanomaterials.- Electronic Structure in Clusters and Nanoparticles.- Optical Properties of Metallic Nanoparticles.- Mechanical and Nanomechanical Properties.- Superplasticity.- Reactivity of Metal Nanoparticles.- Inverse Systems – Nanoporous Solids.- Inverse Systems – Confined Fluids: Phase Diagram and Metastability.- Supramolecular Chemistry: Applications and Prospects.- Nanocomposites: The End of Compromise.- Synthesis of Nanomaterials and Nanoparticles.- Specific Features of Nanoscale Growth.- Gas Phase Synthesis of Nanopowders.- Synthesis of Nanocomposite Powders by Gas—Solid Reaction and by Precipitation.- Colloidal Methods and Shape Anisotropy.- Mechanical Milling.- Supercritical Fluids.- Fabrication of Nanostructured Bulk Materials and Nanoporous Materials.- Bulk Nanostructured Materials Obtained by Powder Sintering.- Self-Assembly of Nanomaterials at Macroscopic Scales.- Assemblies of Magnetic Nanoparticles.- Nanostructured Coatings.- Dispersion in Solids.- Nanoporous Media.- Molecular Imprinting.- Applications of Nanomaterials.- Electronics and Electromagnetism.- Optics.- Mechanics.- Biology and the Environment.