๐”– Scriptorium
โœฆ   LIBER   โœฆ

๐Ÿ“

Development of Nanotechnology in Textiles

โœ Scribed by A.K. Haghi, G.E. Zaikov


Publisher
Nova Science Publisher's
Year
2012
Tongue
English
Leaves
190
Series
Nanotechnology Science and Technology
Category
Library

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โœฆ Table of Contents


DEVELOPMENT OF NANOTECHNOLOGY IN TEXTILES......Page 3
DEVELOPMENT OF NANOTECHNOLOGY IN TEXTILES......Page 5
CONTENTS......Page 7
PREFACE......Page 9
1. INTRODUCTION......Page 11
2.2. Electroless Plating Procedure......Page 12
2.3. Characterization Techniques......Page 13
3.1. Fabric Characteristics......Page 14
3.2. Fabric Resistance......Page 16
ACKNOWLEDGMENT......Page 19
REFERENCES......Page 20
INTRODUCTION......Page 21
1.1. Chitosan......Page 22
1.2. Nanobiocomposites with Chitosan Matrix......Page 23
2. CARBON NANOTUBES......Page 25
2.1. Nanotube Composites......Page 27
2.2. Mechanical and Electrical Properties of Carbon Nanotube/Natural Biopolymer Composites......Page 29
2.3. Carbon Nanotube Composite Application......Page 30
3.2.1. Solution-Casting-Evaporation......Page 33
3.2.1.1. Properties and Characterization......Page 35
3.2.4. The Electro-Deposition Method......Page 36
3.2.6. Electrostatic Interaction......Page 37
3.2.8.1. Layer-by-Layer Self-Assembly......Page 38
3.2.11. Electrospinning......Page 39
A.1. Structures of a Crystal Lattice of Diamond and Graphite......Page 40
A.3. Carbon Nanotubes......Page 42
A.4. Fullerenes......Page 45
A.5. Classification of Nanotubes......Page 47
A.6. Chirality......Page 49
A.7. Diameter, Chirality Angle and the Mass of Single-Walled Nanotube......Page 52
REFERENCES......Page 56
1. INTRODUCTION......Page 65
2.2. Preparation of CHT-MWNTs Dispersions......Page 69
2.3. Measurements and Characterizations......Page 70
3.1. The Characteristics of MWNT/CHT Dispersion......Page 72
3.2. The Physical and Morphological Characteristics of MWNTs/CHT Nanofiber......Page 74
CONCLUSION......Page 80
Capillary Effects......Page 81
A.2 Electrokinetic Processes in Micro - and Nanoscale Systems......Page 82
A.3. Continuum Hypothesis......Page 84
A.4. The Molecular Dynamics Method......Page 86
A.5. van Der Waals Equation......Page 90
REFERENCES......Page 95
INTRODUCTION......Page 99
Materials......Page 100
Nanocomposite Processing......Page 101
Investigation Techniques......Page 103
Nanocomposite Structure......Page 104
Thermal-Oxidative Degradation of PP/MWCNT Nanocomposites......Page 106
Kinetic Analysis of Thermal Degradation of PP/MWNT......Page 109
COMBUSTIBILITY OF PP/MWCNT NANOCOMPOSITES......Page 113
REFERENCES......Page 117
INTRODUCTION......Page 121
EXPERIMENTAL......Page 122
RESULTS AND DISCUSSION......Page 123
CONCLUSION......Page 130
REFERENCES......Page 131
INTRODUCTION......Page 133
OXIDIZED POLYSACCHARIDES AND LIGNIN......Page 137
MODE OF ACTION OF OXIDIZED POLYSACCHARIDES (INTUMESCENCE BEHAVIOR)......Page 141
REFERENCES......Page 145
1. INTRODUCTION......Page 147
2.1.1. Materials......Page 150
2.1.2. Measurements......Page 151
2.1.4. PET Fabric Treatment with a Hyperbranched Polymer......Page 152
2.1.5. Dyeing Procedure with Acid Dye......Page 154
2.2. Case 2- Experimental Design and Optimization f Treatment Conditions......Page 155
3.1. Synthesis of Hyperbranched Polymer......Page 157
3.2.1. Hyperbranched Polymer Analysis......Page 158
3.2.2. Hyperbranched Treated PET Fabrics Analysis......Page 159
3.3.1. 1H NMR Analysis......Page 160
3.2.2. 13 C NMR Analysis......Page 161
3.3. Solubility Properties......Page 162
3.4.1. HBP Contact Angle......Page 163
3.4.1. HBP-Treated PET Fabrics Contact Angle......Page 164
3.5. X-Ray Diffraction (XRD)......Page 165
3.6. Zeta Potential......Page 167
3.7. Dyeing Properties of HBP Treated Polyester Fabric......Page 168
3.8.1. HBP Treatment Fastness......Page 169
3.8.2. Dyeing Fastness......Page 170
3.9. The Analysis of Variance (ANOVA) and Optimization......Page 171
CONCLUSION......Page 175
REFERENCES......Page 176
INDEX......Page 181


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