
ISBN13: | 9780323512558 |
ISBN10: | 03235125511 |
Binding: | Paperback |
No. of pages: | 666 pages |
Size: | 235x191 mm |
Weight: | 1380 g |
Language: | English |
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Fundamentals of Nanoparticles
EUR 176.00
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Fundamentals of Nanoparticles: Classifications, Synthesis Methods, Properties and Characterization explores the nanoparticles and architecture of nanostructured materials being used today in a comprehensive, detailed manner. This book focuses primarily on the characterization, properties and synthesis of nanoscale materials, and is divided into three major parts. This is a valuable reference for materials scientists, and chemical and mechanical engineers working in R&D and academia, who want to learn more about how nanoparticles and nanomaterials are characterized and engineered.
Part one covers nanoparticles formation, self-assembly in the architecture nanostructures, types and classifications of nanoparticles, and signature physical and chemical properties, toxicity and regulations. Part two presents different ways to form nanometer particles, including bottom-up and top-down approaches, the classical and non-classical theories of nanoparticles formation and self-assembly, surface functionalization and other surface treatments to allow practical use. Part three covers characterization of nanoparticles and nanostructured materials, including the determination of size and shape, in addition to atomic and electronic structures and other important properties.
- Includes new physical and chemical techniques for the synthesis of nanoparticles and architecture nanostructures
- Features an in-depth treatment of nanoparticles and nanostructures, including their characterization and chemical and physical properties
- Explores the unusual properties of materials that are developed by modifying their shape and composition and by manipulating the arrangement of atoms and molecules
- Explains important techniques for the synthesis, fabrication and the characterization of complex nano-architectures
1. Nanostructures for Imaging, Medical Diagnostics and Therapy
2. Nature's Nanoparticles-Using Viruses as Nanomedicines and for Bio-Imaging
3. Catalytic Applications of Janus Nanoparticles
4. Tailored Nanomaterials for Antimicrobial Applications
5. Nanocomposite Polymer Film for Antibiofouling Materials Surfaces
6. Engineered Nanomaterials for Wastewater Treatment: Current and Future Trends
7. Functional Thin Films and Nanostructures for Sensors
8. Nanoarchitectured Carbon-Metal Oxide Electrodes for Supercapacitance Energy Storage
9. Engineered Nanomaterials for Papermaking Industry
10. Excipients Used in Oral Nanocarrier-Based Formulations
11. Applications of Nanoparticle Technologies in the Construction Industry. A Step Forward Toward Greener Buildings
12. The Application of Ionic Liquids in Nanotechnology
13. Nanostructured Self-healing Polymers and Composites
14. Drug Scavenging Lipid Based Nanoparticles as Detoxifying Agents in vivo
15. Nanostructured Polymer Scaffolds for Tissue Engineering Technology
16. Functional Thin Films and Nanostructures for Sensors
17. Micro/nanocapsules for Anticorrosion Coatings
18. Nanoradiopharmaceuticals in Current Molecular Medicine