Polymer-Based Nanostructured Barrier Materials

Polymer-Based Nanostructured Barrier Materials -10% portes grátis

Polymer-Based Nanostructured Barrier Materials

Jibin, Koloth Paduvilan; Prajitha, V.; Thomas, Sabu

Elsevier - Health Sciences Division

12/2025

784

Mole

Inglês

9780323995313

15 a 20 dias

Descrição não disponível.
Part I: Materials for nanostructured barrier materials
1. Introduction to polymers as barrier materials
2. The Green Barrier: Biopolymers in Packaging
3. Growth and requirements of barrier materials in packaging
4. Nanomaterials as functional enablers in smart and active packaging
5. Oxygen and aroma barrier in films
6. Biodegradable packaging and gas barrier mechanism
7. Package industry growth

Part II: Properties and applications
8. Low conducting melt-mixed films of polypropylene and carbon nanofibers for antistatic packaging
9. Nanocellulose-based materials in packaging
10. Barrier properties of polymer nanoclay and hybrid composites
11. Barrier properties of polymer graphite, graphene, and their hybrid composites
12. Barrier properties of polymer polyhedral oligomeric silsesquioxane and hybrid composites
13. Graphene-based polymer nanocomposites as barrier coatings for corrosion protection
14. Applications of barrier films in the food industry
15. Standardized testing of nanostructured polymer-based barrier films` for edible fruit coatings
16. Nanostructured barrier materials for edible packaging
17. Biobased packaging
18. Polymeric barrier materials for biomedical applications
19. Polymeric nanocarriers for herbal medicine delivery and therapeutic applications
20. Natural bioactive polyphenols as ultraviolet barriers in biodegradable packaging
21. Smart packaging systems for quality preservation and food safety monitoring
22. Applications of barrier nanostructured electrospun polymeric fibers and nonwovens
23. Polysaccharide and proteins versus synthetic polymer aerogels to remove contaminants from contaminated water
24. Miscellaneous applications of polymers as barrier materials
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2-D; 3-D; Active packaging; Advanced technologies; Aerogel; And 1-D nanocomposites; Antimicrobial; Antioxidant; Applications; Applications of edible packaging materials; Aroma barrier; Barrier materials; Barrier properties; Barrier protection; Bioactives compounds; Biocompatibility; Biodegradable material; Biodegradable packaging; Biodegradable polymer; Biodegradation; Biomass; Biopolymer films; Biopolymers; Bioprosthetics; Carbon foorprints; Carbon nanofibers; Catalytic prospects; Chemical compound; Chitin and chitosan; Chitosan; Coatings; Cole-Cole model; Composite materials; Consumer education; Corrosion; Degradation; Dielectric permittivity; Drug delivery system; Drug development; Economic impact; Edible coating; Edible packaging materials; Electrical conductivity; Electrical impedance; Electrical modulus; Environmental pollution; Evolution of packaging; Films; Flexible plastics; Food applications; Food packaging; Food preservation; Food products; French policy; Gas barrier films; Gas barrier mechanisms; Gas barrier properties; Gas permeability; Graphene; Graphite; Graphite or graphene polymer composites; Graphite/graphene hybrid composites; Hybrid composites; Inteligent packaging; International standards; Market growth; Materials characterization; Materials chemistry; Materials class; Materials in biotechnology; Materials processing; Materials property type; Materials science engineering; Materials structure; Melt blending; Moisture barrier properties; Molecular filtration; Nanocellulose; Nanoclay; Nanocomposite packaging; Nanostructured additives; Nanostructured materials; Nanotechnology; Natural polyphenols; Oxygen barrier; Oxygen permeability; Packaging; Packaging application; Packaging applications; Packaging industries; Packaging industry; Packaging materials; Packaging techniques; Packaging trends; Permeability; Pharmaceutical science; Pharmaceutical therapy; Pharmaceutics; Pharmacological parameter; Poly lactic acid