Nanoparticle Technology Handbook
Hosokawa, Masuo; Nogi, Kiyoshi; Naito, Makio; Yokoyama, Toyokazu
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Table of contents
- Cover
- Prefacev
- List of Contributorsvii
- Table of Contentsxi
- From the Editorsxxi
- Fundamentals1
- Chapter 1. Basic Properties and Measuring Methods of Nanoparticles3
- 1.1 Size effect and properties of nanoparticles5
- 1.2 Particle size10
- 1.3 Particle shape12
- 1.4 Particle density14
- 1.5 Melting point, surface tension, wettability18
- 1.6 Specific surface area and pore20
- 1.7 Composite structure23
- 1.8 Crystal structure28
- 1.9 Surface characteristics32
- 1.10 Mechanical property36
- 1.11 Electrical properties38
- 1.12 Magnetic properties42
- 1.13 Optical property of nanoparticle45
- Chapter 2. Structural Control of Nanoparticles49
- 2.1 Structure construction and function adaptation of nanoparticles51
- 2.2 Particle size56
- 2.3 Particle shape71
- 2.4 Composite structure79
- 2.5 Pore structure94
- 2.6 Nanoparticle design for DDS105
- 2.7 Nanotubes (CNT)109
- Chapter 3. Characteristics and Behavior of Nanoparticles and its Dispersion Systems113
- 3.1 Introduction of nanoparticle dispersion and aggregation behavior115
- 3.2 Single nanoparticle motion in fluid119
- 3.3 Brownian diffusion126
- 3.4 Adsorption properties and wettability of nanoparticle surface127
- 3.5 Interactions between particles129
- 3.6 Aggregation and dispersion, characterization and control157
- 3.7 Rheology of slurry165
- 3.8 Simulation of colloidal dispersion system169
- Chapter 4. Control of Nanostructure of Materials177
- 4.1 Assembly of nanoparticles and functionalization179
- 4.2 Nanoparticles arranged structures179
- 4.3 Nanopore structure190
- 4.4 Nanocomposite structure203
- 4.5 Structure control of nanoparticle collectives by sintering and bonding222
- 4.6 Self-assembly250
- Chapter 5. Characterization Methods for Nanostructure of Materials267
- 5.1 Nanostructure and function (characterization of local nanostructure)269
- 5.2 Crystal structure270
- 5.3 Surface structure279
- 5.4 Nanopore characterization297
- 5.5 Grain boundaries and interfaces303
- 5.6 Evaluation methods for oxide heterostructures312
- Chapter 6. Evaluation Methods for Properties of Nanostructured Body317
- 6.1 Functionality of nanostructures and their characteristic evaluation319
- 6.2 Mechanical properties324
- 6.3 Thermophysical properties336
- 6.4 Electric properties344
- 6.5 Electrochemical properties358
- 6.6 Magnetic properties370
- 6.7 Optical properties372
- 6.8 Catalytic property377
- 6.9 Properties of gas permeation and separation membranes380
- Chapter 7. Environmental and Safety Issues with Nanoparticles385
- 7.1 Introduction387
- 7.2 Nanoparticles and environment387
- 7.3 Safety of nanoparticles400
- 7.4 Removal of nanoparticles410
- Applications419
- 1. Dispersion of fine Silica Particles using Alkoxysilane and Industrialization423
- 1. Sol–gel hybrid423
- 2. Molecular design423
- 3. Unmeltable plastics: epoxy resin hybrid425
- 4. Tough resin: hybrid of the phenol resin system426
- 5. Soft silica hybrid: hybrid of the urethane system426
- 6. Cheap engineering plastics in place for imide: hybrid of the amideimide system426
- 7. Imide useful for electroless plating: hybrid of the imide system427
- 2. Generation of Metal Nanoparticles Using Reactive Plasma arc Evaporation428
- 1. Summary of the reactive plasma arc evaporation method428
- 2. Nanoparticles by the reactive plasma arc evaporation method429
- 3. The nanoparticles generation rate, characteristic, and shape429
- 4. Application of the nanoparticle430
- 3. Sensing Based on Localized Surface Plasmon Resonance in Metallic Nanoparticles432
- 1. Localized surface plasmon432
- 2. Two sensing method using plasmon432
- 4. Microelectronics Packaging by Metal Nanoparticle Pastes434
- 1. Conductive paste technique and metal nanoparticle paste434
- 2. Low temperature firing and fine electronic circuit pattern formation by screen printing435
- 3. Direct formation of the electronic circuit pattern by inkjet printing437
- 4. Application as the joining materials438
- 5. A Dye-Sensitized Solar Cell Utilizing Metal Nanoparticle438
- 1. What is a dye-sensitized solar cell?438
- 2. Enhancement of the absorption coefficient of the ruthenium dye, with the silver nanoparticle prod439
- 3. Enhancement of the absorption coefficient of silver nanoparticle-ruthenium dye within porous TiO2440
- 6. Design of Nanoparticles for oral Delivery of Peptide Drugs442
- 1. Particulate design and functions443
- 2. Case studies445
- 7. Formation of Thick Electronic Ceramic Films with Bonding Technique of Crystalline fine Particles450
- 1. Aerosol deposition method (ADM)450
- 2. Formation of thick electronic ceramic films with ADM450
- 3. Applications of AD ceramic films451
- 8. Development and Multi-Functionalization of High-Functional Separation Membranes453
- 1. Gas separation453
- 2. Liquid separation456
- 9. Development of Polymer-Clay Nanocomposites by Dispersion of Particles into Polymer Materials458
- 1. Nylon 6–clay hybrid458
- 2. Synthesis and properties of polypropylene–clay hybrid459
- 3. Synthesis and properties of EPDM–clay hybrid459
- 4. Morphology control by polymers with clay459
- 10. Development of Novel Ferroelectric Materials460
- 1. Crystal structure of bismuth layer-structured ferroelectrics (BLSFs)460
- 2. Crystal growth and experimental procedure461
- 3. Layered structure, dielectric and leakage current properties of BiT–BBTi crystals462
- 4. Giant polarization in BiT–BBTi crystals462
- 11. Development of New Phosphors464
- 1. History of development of nanophosphor464
- 2. Properties of rare earth nanophosphor465
- 3. Development trend of new nanophosphor465
- 12. Zeolite Membrane467
- 1. Characteristics467
- 2. Synthesis467
- 3. Separation properties of zeolite membranes469
- 13. Enhancement of the Performance of Insulating Materials470
- 1. Withstand voltage characteristics470
- 2. Tracking-resistance and erosion-resistance characteristics472
- 3. Thermal characteristics473
- 14. Barium Titanate Nanoparticles Synthesized Under sub and Supercritical Water Conditions473
- 1. Experiment for producing tetragonal BaTiO3 nanoparticles by supercritical hydrothermal synthesis474
- 2. Selective production of tetragonal BaTiO3474
- 15. Ceramic Filter for Trapping Diesel Particles477
- 1. Production of PM477
- 2. Trapping of PM478
- 3. Pressure loss479
- 4. Features of porous silicon carbide480
- 5. Functions and characteristics of DPF480
- 6. Future of filters for trapping diesel particles481
- 16. Nanoparticle Formation of DNA (Globule Transformation)481
- 1. Tolerance of DNA nanoparticles against mechanical stress482
- 2. Micromanipulation of DNA nanoparticles483
- 17. Addressing of Nanoparticles by Using DNA Molecules485
- 1. Stretching of DNA molecules486
- 2. Addressing of nanoparticles487
- 18. Development of High-Performance Electrochemical Reactors489
- 1. Environmental purification by electrochemical reactors489
- 2. NOx decomposition in the exhaust gas with electrochemical reactors489
- 3. Development of the electrochemical reactors for simultaneous purification of NOx /PM492
- 19. Dendrimers and their Application to Organic Electronics Devices494
- 1. Synthesis and structure of dendrimer494
- 2. Metal assembling property of dendrimer496
- 3. Application to electronic devices496
- 20. Electrical Conductive CNT Dispersed Si3N4 Ceramics498
- 21. Development of Functional Skincare Cosmetics Using Biodegradable PLAGA Nanospheres501
- 1. Nanocosmetics that whiten skin and eliminate wrinkles501
- 2. Evaluation of the cutaneous permeability of PLGA nanospheres and their functional effect501
- 3. Functional cosmetics using PLGA nanospheres504
- 22. Development of Photonic Crystals Based on Nanoparticle Assembly506
- 1. Nanoparticle assembly technique506
- 2. Fabrication of photonic crystals by nanoparticleassembly technique507
- 23. Liquid-Crystalline Inorganic NANO and fine Particles509
- 1. Organic liquid crystals and lyotropic liquid-crystalline inorganic fine particles509
- 2. Development of organic–inorganic hybrid liquid crystals510
- 3. Summary and prospect514
- 24. Closely Packed Colloidal Crystal Assembled with Nanoparticles and its Application for smart Mate515
- 1. Closely packed colloidal crystal films516
- 2. Structural color of colloidal crystal and its tuning mechanism517
- 3. Tunable structural color by swelling with liquid518
- 4. Tunable structural color by applying mechanical stress519
- 5. Summary and outlook519
- 25. Development of New Cosmetics Based on Nanoparticles521
- 1. Use of nanoparticles521
- 2. Use as compound particles524
- 3. Future development526
- 26. Dispersion Control of Al2O3 Nanoparticles in Ethanol527
- 1. Effect of molecular weight of PEI on nanoparticle suspension viscosity527
- 2. Relationship between molecular size of PEI and suspension viscosity528
- 3. Surface interaction between Al2O3 nanoparticles using nanocolloidal probe AFM528
- 4. Action mechanism of polymer dispersant on Al2O3 nanoparticle suspension529
- 27. Development of the Thermoresponsive Magnetic Nanoparticle and its Deployment in the Biotechnolog531
- 1. Magnetic nanoparticle material531
- 2. What is a thermoresponsive polymer?531
- 3. Thermoresponsive magnetic nanoparticles532
- 4. Application examples of the thermoresponsive magnetic nanoparticles to the biotechnology field533
- 5. Future perspective537
- 28. Development of fuel Cells538
- 1. Development task of fuel cells539
- 2. Development of high-performance solid oxide fuel cells using nanoparticle technology540
- 29. Delivery to the Brain543
- 1. Surface modification to improve the nanoparticle distribution in the brain543
- 2. Effect of administration route on the brain distribution544
- 3. Perspective of brain targeting with nanoparticles546
- 30. Nozzle-Free Inkjet Technology546
- 1. Principle of nozzle-free inkjet technology and outline of developed system547
- 2. Formation of slurry using nozzle-free inkjet technology549
- 31. Development of Exhaust Catalyst550
- 1. Supported metal catalyst550
- 2. Oxygen storage capacity (OSC) of catalyst551
- 3. Improvement of OSC of catalyst551
- 4. Improvement of thermal resistance of catalyst553
- 32. Development of Optical Memory Using Semiconductor Nanoparticles555
- 1. Fluorescence characteristics of semiconductor nanoparticles555
- 2. Optical memory effect of semiconductor nanoparticle thin films556
- 3. Methods of preparing and evaluating CdSe thin films556
- 4. Dependency of intensity of fluorescence on the excitation light intensity556
- 5. Future topics557
- 33. Development of Bright Phosphors Using Glasses Incorporating Semiconductor Nanoparticles558
- 1. Syntheses of highly photoluminescent semiconductor nanoparticles by an aqueous solution method559
- 2. Preparation of glass phosphors incorporating semiconductor nanoparticles by a sol–gel method559
- 34. Development of Photocatalyst Inserted into Surface of Porous Aluminosilicate562
- 1. Structure of TiO2–aluminosilicate complex562
- 2. Photocatalysis of TiO2–aluminosilicate complex562
- 3. Photoenduarance of paper with TiO2–aluminosilicate complex564
- 35. AC Overhead Transmission Line Audible-Noise Reduction Measures using Surface Improvement566
- 1. Audible noise of AC overhead transmission lines566
- 2. Wetting property of power lines566
- 3. Preparation of test power lines567
- 4. Features of titanium oxide thermal-sprayed films568
- 5. Audible-noise measurement568
- 36. Development of a High-Performance Secondary Battery by Controlling the Surface Structure570
- 1. Anode of a nickel hydrogen battery571
- 2. Cathode of the nickel hydrogen battery572
- 3. Cathode of lithium ion battery572
- 4. Anode of the lithium ion battery573
- 37. Pinpoint Drug and Gene Delivery575
- 1. Bio-nanocapsules (BNC)575
- 2. Potential applications of BNC576
- 3. Assignment577
- 4. Conclusion578
- 38. Expression of Optical Function by Nanostructure using Femtosecond Laser Processing578
- 1. Space selective valence state manipulation of rare earth ions inside glasses578
- 2. Precipitation control of gold nanoparticles inside transparent materials by a femtosecond laser579
- 3. Nanograting fabrication581
- 39. Instantaneous Nanofoaming Method for Fabrication of Closed-Porosity Silica Particle583
- 40. Evaluation and Applications of Dispersing Carbon Nanotube in the Polymers588
- 1. Carbon nanotube588
- 2. Fracture model of agglomerates of carbon nanotube588
- 3. Dispersion of CNT by an extruder588
- 4. Dispersion of composites and its evaluation590
- 5. Relationship between the agglomerate fraction Ar and composite properties590
- 6. Percolation591
- 7. Development of CNT composite resin materials592
- 41. Surface Modification of Inorganic Nanoparticles by Organic Functional Groups593
- 1. Surface-modified noble metal nanoparticles593
- 2. Organic modification of metal oxide nanoparticles593
- 3. Hybridization of inorganic nanoparticles with biomolecules595
- 42. Fabrication Technique of Organic Nanocrystals and their Optical Properties and Materialization596
- 1. The organic compounds used for nanocrystallization596
- 2. Fabrication techniques of organic nanocrystals596
- 3. Size-dependence of optical properties for organic nanocrystals599
- 4. Orientation control of dispersed organic nanocrystals by external field600
- 43. Bio-Imaging with Quantum Dots601
- 1. Developments of quantum dots601
- 2. Development of bio-imaging602
- 3. Bio-imaging and quantum dots602
- 4. Quantum dots label for the antibody603
- 5. In vivo imaging of the quantum dots stained cell: the localization in organs603
- 6. Observation of the localization from outside of the body605
- 44. Application of Quantum dots for Bio-Medical Engineering606
- 1. Application for laboratory test606
- 2. Diagnosis by imaging analysis607
- Subject Index609
Book details
- Vendor Elsevier S & T
- SKU 9780444531223
- ISBN-13 9780080558028
- Author Hosokawa, Masuo; Nogi, Kiyoshi; Naito, Makio; Yokoyama, Toyokazu
- Category Science
- Subject Physical & Theoretical
Do you have questions about this book?
Nanoparticle technology, which handles the preparation, processing, application and characterisation of nanoparticles, is a new and revolutionary technology. It becomes the core of nanotechnology as an extension of the conventional Fine Particle / Powder Technology. Nanoparticle technology plays an important role in the implementation of nanotechnology in many engineering and industrial fields including electronic devices, advanced ceramics, new batteries, engineered catalysts, functional paint and ink, Drug Delivery System, biotechnology, etc.; and makes use of the unique properties of the nanoparticles which are completely different from those of the bulk materials.
This new handbook is the first to explain complete aspects of nanoparticles with many application examples showing their advantages and advanced development. There are handbooks which briefly mention the nanosized particles or their related applications, but no handbook describing the complete aspects of nanoparticles has been published so far.
The handbook elucidates of the basic properties of nanoparticles and various nanostructural materials with their characterisation methods in the first part. It also introduces more than 40 examples of practical and potential uses of nanoparticles in the later part dealing with applications. It is intended to give readers a clear picture of nanoparticles as well as new ideas or hints on their applications to create new materials or to improve the performance of the advanced functional materials developed with the nanoparticles.
* Introduces all aspects of nanoparticle technology, from the fundamentals to applications.
* Includes basic information on the preparation through to the characterization of nanoparticles from various viewpoints
* Includes information on nanostructures, which play an important role in practical applications.
This new handbook is the first to explain complete aspects of nanoparticles with many application examples showing their advantages and advanced development. There are handbooks which briefly mention the nanosized particles or their related applications, but no handbook describing the complete aspects of nanoparticles has been published so far.
The handbook elucidates of the basic properties of nanoparticles and various nanostructural materials with their characterisation methods in the first part. It also introduces more than 40 examples of practical and potential uses of nanoparticles in the later part dealing with applications. It is intended to give readers a clear picture of nanoparticles as well as new ideas or hints on their applications to create new materials or to improve the performance of the advanced functional materials developed with the nanoparticles.
* Introduces all aspects of nanoparticle technology, from the fundamentals to applications.
* Includes basic information on the preparation through to the characterization of nanoparticles from various viewpoints
* Includes information on nanostructures, which play an important role in practical applications.
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