Table of Contents
1. INTRODUCTION
2. SMART MATERIALS AND NANOTECHNOLOGY
- 2.1 PIEZOELECTRIC MATERIALS
- 2.2 ELECTROSTRICTIVE AND MAGNETOSTRICTIVE MATERIALS
- 2.3 ELECTROCHROMIC MATERIALS
- 2.4 SHAPE MEMORY ALLOYS
- 2.5 THERMOELECTRICS
- 2.6 ELECTRO-, MAGNETO-, RHEOLOGICAL FLUIDS
- 2.6.1 Electrorheological (ER) fluids
- 2.6.2 Magneto-rheological (MR) fluids
- 2.7 SMART GELS
3. NANOMATERIALS FOR SMARTNESS
- 3.1 THIN FILMS AND COATINGS
- 3.2 NANOPARTICLES
- 3.3 NANOCRYSTALLINE MATERIALS
- 3.4 CARBON NANOTUBES
- 3.5 NANOWIRES
- 3.6 FULLERENES
- 3.7 QUANTUM DOTS
4. MARKETS
- 4.1 COMMERCIAL DEVELOPMENT
- 4.2 LIFE SCIENCES AND HEALTHCARE
- 4.3 ENERGY
- 4.4 ENVIRONMENT
- 4.5 AEROSPACE AND AVIATION
- 4.6 DEFENCE
- 4.7 AUTOMOTIVE
- 4.8 AGRICULTURE, FOOD AND PACKAGING
- 4.9 SPORTS AND LEISURE
- 4.10 CONSTRUCTION
- 4.11 TEXTILES
5. FOCUS AREA: PIEZOELECTRIC SMART MATERIALS
- 5.1 INTRODUCTION
- 5.2 NANOMATERIALS FOR PIEZOELECTRICS
- 5.3 MARKETS AND APPLICATIONS
- 5.4 CHALLENGES AND BARRIERS
6. FOCUS AREA: THERMOELECTRIC MATERIALS
- 6.1 INTRODUCTION
- 6.2 NANOMATERIALS FOR THERMOELECTRICS
- 6.3 MARKETS AND APPLICATIONS
- 6.4 CHALLENGES AND BARRIERS
7. FOCUS AREA: SELF-REPAIRING SMART MATERIALS
- 7.1 INTRODUCTION
- 7.2 NANOMATERIALS FOR SELF-REPAIR
- 7.3 MARKETS AND APPLICATIONS
- 7.4 CHALLENGES AND BARRIERS
8. GLOSSARY OF TERMS
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