Development of nanotechnology in textiles / A.K. Haghi and G.E. Zaikov, editors.
Material type: TextSeries: Nanotechnology science and technology series | Materials science and technologies seriesPublisher: New York : Nova Science Publishers [2012]Description: 1 online resourceContent type:- text
- computer
- online resource
- 1620810301
- 9781620810309
- 1620810522
- 9781620810521
- 677/.02832 23
- TA418.9.N35
Includes bibliographical references and index.
Description based on print version record and CIP data provided by publisher.
English.
DEVELOPMENT OF NANOTECHNOLOGY IN TEXTILES ; DEVELOPMENT OF NANOTECHNOLOGY IN TEXTILES ; CONTENTS ; PREFACE ; SILVER NANOPARTICLES PLATING OF FABRICS ; 1. INTRODUCTION ; 2. EXPERIMENTAL ; 2.1. Chemical and Reagents ; 2.2. Electroless Plating Procedure ; 2.3. Characterization Techniques ; 3. RESULTS AND DISCUSSION ; 3.1. Fabric Characteristics; 3.2. Fabric Resistance ; CONCLUSION ; ACKNOWLEDGMENT ; REFERENCES ; CARBON/CHITOSAN NANOCOMPOSITES; INTRODUCTION ; 1. BIOPOLYMERS ; 1.1. Chitosan ; 1.2. Nanobiocomposites with Chitosan Matrix; 2. CARBON NANOTUBES ; 2.1. Nanotube Composites.
2.2. Mechanical and Electrical Properties of Carbon Nanotube/Natural Biopolymer Composites 2.3. Carbon Nanotube Composite Application ; 3. CHITOSAN/CARBON NANOTUBE COMPOSITES; 3.1. Chitosan/Carbon Nanotube Nanofluids ; 3.2. Preparation Methods of Chitosan/CNTs Nanocomposites ; 3.2.1. Solution-Casting-Evaporation; 3.2.1.1. Properties and Characterization ; 3.2.2. Crosslinking-Casting-Evaporation ; 3.2.3. Surface Deposition Crosslinking ; 3.2.4. The Electro-Deposition Method ; 3.2.5. Covalent Grafting ; 3.2.5.1. Nucleophilic Substitution Reaction ; 3.2.6. Electrostatic Interaction.
3.2.7. Microwave Irradiation 3.2.8. Layer-by-Layer ; 3.2.8.1. Layer-by-Layer Self-Assembly ; 3.2.9. Freeze-Drying; 3.2.10. Wet-Spinning ; 3.2.11. Electrospinning ; CONCLUSION ; APPENDIX A. CARBON NANOTUBES ; A.1. Structures of a Crystal Lattice of Diamond and Graphite ; A.2. Graphene ; A.3. Carbon Nanotubes ; A.4. Fullerenes ; A.5. Classification of Nanotubes ; A.6. Chirality ; A.7. Diameter, Chirality Angle and the Mass of Single-Walled Nanotube; REFERENCES ; CONDUCTIVE CHITOSAN/MULTIWALLED CARBON NANOTUBES (MWNTS) ELECTROSPUN NANOFIBER ; 1. INTRODUCTION ; 2. EXPERIMENTAL ; 2.1. Materials.
2.2. Preparation of CHT-MWNTs Dispersions 2.2. Electrospinning of Chitosan/Carbon Nanotube Dispersion ; 2.3. Measurements and Characterizations ; 3. RESULTS AND DISCUSSION ; 3.1. The Characteristics of MWNT/CHT Dispersion; 3.2. The Physical and Morphological Characteristics of MWNTs/CHT Nanofiber ; CONCLUSION; APPENDIX A ; A.1. Basic Factors in Nanoscale Systems ; Capillary Effects; Specific Electrical Resistance of Carbon Nanotubes ; Emission Properties of Carbon Nanotubes; A.2 Electrokinetic Processes in Micro -- and Nanoscale Systems ; A.3. Continuum Hypothesis.
A.4. The Molecular Dynamics Method A.5. van Der Waals Equation ; REFERENCES ; COMBUSTION AND THERMAL DEGRADATION OF POLYPROPYLENE IN THE PRESENCE OF MULTIWALLED CARBON NANOTUBE COMPOSITES ; INTRODUCTION ; EXPERIMENTAL ; Materials ; Nanocomposite Processing ; Investigation Techniques ; RESULTS AND DISCUSSION ; Nanocomposite Structure ; Thermal-Oxidative Degradation of PP/MWCNT Nanocomposites ; Kinetic Analysis of Thermal Degradation of PP/MWNT; COMBUSTIBILITY OF PP/MWCNT NANOCOMPOSITES ; REFERENCES ; POLYMER/ORGANOCLAY NANOCOMPOSITES REINFORCEMENT ; INTRODUCTION ; EXPERIMENTAL.
Nano textiles are those designed and engineered on the nanoscale to create specific functions. These nano functions are very diverse and range from UV protection and antibacterial functions to moisture management. This book summarizes the development of nanotechnology in textile areas.
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