Biopolymer-based metal nanoparticle chemistry for sustainable applications. Volume 2, Applications /
Biopolymers are becoming an increasingly important area of research as traditional chemical feedstocks run low and concerns about environmental impacts increase. One area of particular interest is their use for more sustainable development of metal nanoparticles. Biopolymer-Based Metal Nanoparticle...
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| Format: | eBook |
| Language: | English |
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Amsterdam, Netherlands ; Cambridge, MA :
Elsevier,
[2021]
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| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- 2.8.3. Pectin
- 2.9. Chitin and chitosan in food industry
- 2.10. Conclusion and future prospects
- References
- Chapter 3: Proteins in food industry
- 3.1. Introduction
- 3.2. Structure and chemistry of food proteins
- 3.3. Functional properties of proteins
- 3.3.1. Gelation
- 3.3.2. Emulsifying and foaming
- 3.4. Factors affecting properties of proteins in food products
- 3.4.1. Interactions of proteins with food components
- 3.4.1.1. Water
- 3.4.1.2. Carbohydrates
- 3.4.1.3. Salts
- 3.4.2. Food processes
- 3.4.3. Other processes
- 3.5. Proteins used in food industry
- 3.5.1. Casein
- 3.5.2. Collagen and gelatin
- 3.5.3. Whey
- 3.5.4. Egg proteins
- 3.5.5. Soybean protein
- 3.5.6. Gluten
- 3.6. Conclusion and future prospects
- References
- Chapter 4: Food packaging applications of biopolymer-based (nano)materials
- 4.1. Introduction
- 4.2. Properties of bionanocomposites for food packaging
- 4.2.1. Mechanical properties
- 4.2.2. Barrier properties
- 4.2.3. Biodegradation properties
- 4.2.4. Antimicrobial properties
- 4.3. Polysaccharide-based (nano)materials for food packaging
- 4.3.1. Cellulose-based packaging materials
- 4.3.2. Starch-based packaging materials
- 4.3.3. Chitin and chitosan-based packaging materials
- 4.3.4. Other polysaccharide-based packaging materials
- 4.4. Lignin-based (nano)materials for food packaging
- 4.5. Protein-based (nano)materials for food packaging
- 4.5.1. Gelatin-based packaging materials
- 4.5.2. Zein-based packaging materials
- 4.5.3. Whey-based packaging materials
- 4.5.4. Casein-based packaging materials
- 4.6. Conclusion and future perspective
- References
- Part II: Biomedical and biological applications of biopolymer-based nanomaterials
- Chapter 5: Biomedical applications of biopolymer-based (nano)materials
- 5.1. Introduction.
- 5.2. Biopolymer-based (nano)materials for biomedical applications
- 5.2.1. Drug delivery
- 5.2.1.1. Chitin and chitosan-based (nano)materials in drug delivery
- 5.2.1.2. Cellulose-based (nano)materials in drug delivery
- 5.2.1.3. Alginate-based (nano)materials in drug delivery
- 5.2.1.4. Pectin-based (nano)materials in drug delivery
- 5.2.1.5. Gelatin-based (nano)materials in drug delivery
- 5.2.1.6. Lignin-based (nano)materials in drug delivery
- 5.2.2. Tissue engineering
- 5.2.2.1. Chitin and chitosan-based (nano)materials in tissue engineering
- 5.2.2.2. Cellulose-based (nano)materials in tissue engineering
- 5.2.2.3. Alginate-based (nano)materials in tissue engineering
- 5.2.2.4. Pectin-based (nano)materials in tissue engineering
- 5.2.2.5. Gelatin-based (nano)materials in tissue engineering
- 5.2.2.6. Lignin-based (nano)materials in tissue engineering
- 5.2.3. Wound dressing/healing
- 5.2.3.1. Chitin and chitosan-based (nano)materials in wound dressing/healing
- 5.2.3.2. Cellulose-based (nano)materials in wound dressing/healing
- 5.2.3.3. Alginate-based (nano)materials in wound dressing/healing
- 5.2.3.4. Pectin-based (nano)materials in wound dressing/healing
- 5.2.3.5. Gelatin-based (nano)materials in wound dressing/healing
- 5.2.3.6. Lignin-based (nano)materials in wound dressing/healing
- 5.2.4. Other biomedical applications (e.g., bioimaging, sensors, etc.)
- 5.2.4.1. Application of chitosan-based (nano)materials
- 5.2.4.2. Application of cellulose-based (nano)materials
- 5.2.4.3. Application of alginate-based (nano)materials
- 5.2.4.4. Application of pectin-based (nano)materials
- 5.2.4.5. Application of gelatin-based (nano)materials
- 5.3. Conclusion
- References
- Chapter 6: Biological applications of biopolymer-based (nano)materials
- 6.1. Introduction.
- 6.2. Biopolymer-based (nano)materials for biological applications
- 6.2.1. Antioxidant applications
- 6.2.1.1. Chitin and chitosan-based (nano)materials
- 6.2.1.2. Cellulose-based (nano)materials
- 6.2.1.3. Pectin-based (nano)materials
- 6.2.1.4. Alginate-based (nano)materials
- 6.2.1.5. Gelatin-based (nano)materials
- 6.2.1.6. Lignin-based (nano)materials
- 6.2.2. Antibiofilm applications
- 6.2.2.1. Chitosan-based (nano)materials
- 6.2.2.2. Pectin-based (nano)materials
- 6.2.2.3. Gelatin-based (nano)materials
- 6.2.2.4. Lignin-based (nano)materials
- 6.2.3. Antibacterial applications
- 6.2.3.1. Chitin and chitosan-based (nano)materials
- 6.2.3.2. Cellulose-based (nano)materials
- 6.2.3.3. Pectin-based (nano)materials
- 6.2.3.4. Alginate-based (nano)materials
- 6.2.3.5. Gelatin-based (nano)materials
- 6.2.3.6. Lignin-based (nano)materials
- 6.2.4. Antifungal applications
- 6.2.4.1. Chitin and chitosan-based (nano)materials
- 6.2.4.2. Cellulose-based (nano)materials
- 6.2.4.3. Pectin-based (nano)materials
- 6.2.4.4. Alginate-based (nano)materials
- 6.2.4.5. Gelatin-based (nano)materials
- 6.2.4.6. Lignin-based (nano)materials
- 6.2.5. Antiviral applications
- 6.2.5.1. Chitin and chitosan-based (nano)materials
- 6.2.5.2. Pectin-based (nano)materials
- 6.2.5.3. Gelatin-based (nano)materials
- 6.2.5.4. Lignin-based (nano)materials
- 6.3. Conclusion
- References
- Part III: Further sustainability applications of biopolymer-based metal nanoparticles
- Chapter 7: Catalytic applications of biopolymer-based metal nanoparticles
- 7.1. Introduction
- 7.2. Catalytic applications of polysaccharide-based metal nanoparticles
- 7.2.1. Cellulose
- 7.2.2. Starch
- 7.2.3. Alginate
- 7.2.4. Chitin &
- Chitosan
- 7.2.5. Gum
- 7.3. Catalytic applications of lignin-based metal nanoparticles.
- 7.4. Catalytic applications of proteins-based metal nanoparticles
- 7.4.1. Collagen
- 7.4.2. Gelatin
- 7.5. Conclusion and future perspective
- References
- Chapter 8: Environmental applications of biopolymer-based (nano)materials
- 8.1. Introduction
- 8.2. Types, chemistry, and properties of biopolymer-based (nano)composites
- 8.2.1. Polysaccharides
- 8.2.2. Lignocellulosic complex
- 8.2.3. Proteins
- 8.3. Applications of biopolymer-based (nano)composites in water treatment
- 8.3.1. Chitosan-based (nano)composites
- 8.3.2. Cellulose-based (nano)composites
- 8.3.3. Gum-based (nano)composites
- 8.3.4. Alginate-based (nano)composites
- 8.3.5. Starch-based (nano)composites
- 8.3.6. Pectin-based (nano)composites
- 8.3.7. Lignin-based bio(nano)sorbents
- 8.3.8. Protein-based (nano)composites
- 8.4. Other environmental applications
- 8.4.1. Biohydrogen production
- 8.4.2. Electrochemical applications
- 8.5. Conclusion and future perspective
- References
- Chapter 9: Biopolymer-based metal nanoparticles for biosensing
- 9.1. Introduction
- 9.2. Types of biosensors
- 9.2.1. Electrochemical biosensors
- 9.2.2. Optical biosensors
- 9.2.3. Thermal biosensors
- 9.2.4. Piezoelectric biosensors
- 9.3. Properties of biopolymers for biosensing
- 9.3.1. Biocompatibility
- 9.3.2. Immobilization matrix
- 9.3.3. Bioresponsiveness
- 9.4. Biopolymer-based metal nanoparticles for biosensing
- 9.4.1. Chitosan-based biosensors
- 9.4.2. Cellulose-based biosensors
- 9.4.3. Alginate-based biosensors
- 9.4.4. Other biopolymer-based biosensors
- 9.5. Conclusions and future perspectives
- References
- Chapter 10: Biopolymer-based (nano)materials for supercapacitor applications
- 10.1. Introduction
- 10.2. Principles of supercapacitors
- 10.2.1. Different types of supercapacitors
- 10.2.2. Electrode materials
- 10.2.3. Electrolytes.