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Nanoparticle Technologies : From Lab to Market.

Author: Farid Bensebaa
Publisher: Burlington : Elsevier Science, 2013.
Series: Interface science and technology.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book is a good introductory work to nanoparticle technology. It consists of nine complementary chapters that can be read independently. This book covers promising nanoparticles fabrication technologies with a focus on scalable processes. Integration of nanoparticles into 2D and 3D structures are covered in detail. The most promising applications of nanoparticles in the energy, optoelectronic and biomedical  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Bensebaa, Farid.
Nanoparticle Technologies : From Lab to Market.
Burlington : Elsevier Science, ©2013
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Farid Bensebaa
ISBN: 9780080919270 0080919278
OCLC Number: 823730766
Notes: 4.6. Rapid Quenching Solidification.
Description: 1 online resource (557 pages).
Contents: Front Cover; Nanoparticle Technologies: From Lab to Market; Copyright; Dedication; Contents; Preface; References; Chapter 1: Nanoparticle Fundamentals; 1. Introduction; 2. Classification; 2.1. Composition; 2.1.1. Inorganic Metals and Alloys; 2.1.2. Inorganic Semiconductors; 2.1.2.1. Monoatomic; 2.1.2.2. II-VI NP Series; 2.1.2.3. III-V NP Series; 2.1.2.4. II-III-VI NP Series; 2.1.3. Inorganic Insulators; 2.1.4. Organics and Polymers; 2.1.4.1. Polymer; 2.1.4.2. Organic and Monomer; 2.2. Structure; 2.3. Properties; 2.3.1. Electric and Electronic; 2.3.2. Magnetic; 2.3.3. Optical. 2.3.4. Electromagnetic2.3.5. Mechanical; 2.3.6. Thermal; 2.3.7. Superconducting; 2.3.8. Surface and Chemical Properties; 2.3.9. Solubility; 2.3.10. Tribology; 2.4. Fabrication Process; 2.5. Application Sectors; 3. Functionalization, Formulation, Characterization, and Nanometrology; 3.1. Coating and Functionalization; 3.1.1. Core-Shell; 3.1.2. Functionalization; 3.2. Characterizations; 3.2.1. Geometrical and Structural; 3.2.2. Separation and Postprocessing; 3.2.3. Composition; 3.2.4. Others; 3.3. Nanometrology; 4. Scale-Up and Quality Control; 5. Value Chain-From Raw Materials to Market. 5.1. Concept of Value Chain for NPs5.2. Market and Commercialization; 5.3. Intellectual Property; 5.4. Life Cycle Analysis; 6. Implications of Wider Use of NPs; References; Chapter 2: Wet Production Methods; 1. Introduction; 2. Sonochemistry; 3. Supercritical Fluid; 4. Solvothermal and Hydrothermal; 5. Microwave; 6. Electrically Induced Synthesis; 6.1. Electrochemical Techniques; 6.2. Electrospray; 7. Spray Pyrolysis; 8. Emulsion; 8.1. Microemulsion; 8.2. Miniemulsion; 9. Sol-Gel; 10. Template Synthesis; 11. Green Chemistry; 12. Others; 12.1. High-Temperature Coordinating Solvent. 12.2. Jet Aerosol12.3. Photoreduction; 12.4. Laser Processing; 12.5. Thermal Decomposition; 12.6. Seeding Technique; 12.7. Photographic Process; 12.8. Single Source Compound NP; 12.9. Electroless Deposition; 12.10. Metal-Steam Reforming; 12.11. Polyol Method; 12.12. Hydrogen Reduction; 12.13. In Situ Reduction; 13. Continuous Flow Reactor and Scale-up; 13.1. Conventional Continuous Flow Reactor; 13.2. Flow Tube Reactor; 13.3. Continuous Bioinspired; 13.4. Spray-Drying; 14. Purification, Size-Selective and Other Posttreatment Processes; References; Chapter 3: Dry Production Methods. 1. Introduction2. Mechanical Synthesis; 2.1. Ball Milling; 2.2. Mechanochemical method; 2.3. Severe Plastic Deformation; 2.4. Cryomilling; 3. Gas Phase; 3.1. Inert-Gas Condensation; 3.2. Aerosol Spray Pyrolysis; 3.3. Combustion Flame Synthesis; 3.4. Plasma Spray (or Thermal Spray); 3.5. Chemical Vapor Deposition-Fluidized Bed Reactor; 3.6. Chemical Vapor Condensation; 3.7. Evaporation Techniques; 3.8. Atmospheric Pressure Electrical Discharges; 4. Others; 4.1. Cryomelting; 4.2. Laser Pyrolysis; 4.3. Reactive Plasma Arc Evaporation; 4.4. Microwave Plasma Process; 4.5. Epitaxial Growth.
Series Title: Interface science and technology.

Abstract:

This book is a good introductory work to nanoparticle technology. It consists of nine complementary chapters that can be read independently. This book covers promising nanoparticles fabrication technologies with a focus on scalable processes. Integration of nanoparticles into 2D and 3D structures are covered in detail. The most promising applications of nanoparticles in the energy, optoelectronic and biomedical sectors are summarized and discussed. Current issues and challenges related to nanoparticles production and utilisation are also discussed in the book. Complete a.

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