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Advances in Bio-Based and Biodegradable Polymeric Composites

Advances in Bio-Based and Biodegradable Polymeric Composites

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This reprint summarizes recent advances in the production and research of biobased and biodegradable polymeric composites for various applications. The development and characterization of environmentally friendly, conductive and biomedical materials as well as materials with barrier and antimicrobial properties have been considered and discussed.

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Keywords

  • (bio)composites
  • 3D-printing
  • adhesion parameter
  • adsorption
  • Aging
  • AIM study
  • aliphatic polyesters
  • aminated graphene
  • antibacterial
  • Antibacterial activity
  • antibacterial agent
  • antimicrobial and antioxidant properties
  • antimicrobial film
  • antimicrobial packaging
  • bacterial cellulose
  • Barrier
  • bentonite
  • bio-based epoxy resin
  • bio-reinforcement
  • Biocompatibility
  • biocompatible
  • biocompatible polymer composites
  • biocomposite
  • biocomposites
  • biodegradability
  • Biodegradable
  • biodegradable film
  • biodegradable polymer
  • biodegradable properties
  • biological filler
  • biomedical application
  • bionanocomposite
  • biopolymer
  • block copolymer
  • cassava starch
  • cell matrices
  • Cellulose
  • cellulose fibers
  • cellulose modification
  • cellulose nanocrystals
  • Chinese spirits distiller’s grains
  • chitosan
  • composite
  • composite hydrogel
  • composite resin
  • conducting polymer
  • conductive scaffolds
  • corn starch
  • COSMO-RS
  • crosslink mechanism
  • crosslinking
  • cyclic voltammetry
  • decomposition
  • degradation
  • degradation rate
  • DFT
  • dispersion
  • DMAP-lignin epoxide
  • Drug delivery
  • drug release
  • durability
  • dynamic-mechanical
  • E. coli
  • edible coating
  • electrical conductivity
  • electrospinning
  • environmental ageing
  • epoxidized linseed oil
  • esca
  • extract tea
  • extractions
  • fabrication of scaffolds
  • fiber
  • fish scales
  • fresh-cut watermelon
  • Fs bioscaffolds structuring
  • FT-IR
  • fungicide
  • GO
  • grafting from
  • graphene modification
  • green composites
  • humidity sensor
  • hydration
  • hydrophilicity/hydrophobicity
  • hydrophobicity
  • Hysteresis
  • ion gels
  • ionic liquids
  • Latex
  • Mathematics & science
  • mechanical
  • mechanical behavior
  • Mechanical properties
  • microcrystalline cellulose
  • micronized fibers
  • modeling
  • MWNT-Ag
  • n/a
  • nanocellulose
  • nanocomposite
  • nanocrystalline cellulose
  • natural fiber
  • natural fibre
  • natural filler
  • oligomers of glutamic acid
  • pectin
  • PEDOT: PSS
  • Phaeoacremonium aleophilum
  • Phaeomoniella chlamydospora
  • physicomechanical
  • Physics
  • PLA polymer
  • PLA texturing
  • poly(butylene succinate)
  • poly(glycolic acid)
  • poly(hydroxybutyrate)
  • poly(lactic acid)
  • poly(lactic acid-co-glycolic acid)
  • poly(ε-caprolactone)
  • poly-ε-caprolactone
  • polyaniline
  • polyaniline colloids
  • polybutylene succinate
  • Polyhydroxyalkanoates
  • polylactic acid
  • polymer composite
  • polymer films
  • Prochilodus magdalenae
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • response/recovery time
  • retrogradation
  • rice husk
  • S. aureus
  • sensing mechanism
  • starch
  • steric stabilizer
  • sugar-based surfactant
  • surface appearance
  • surface modifications
  • sustainable
  • temporal scaffolds
  • tensile strength
  • TGA
  • thermal
  • thermal behavior
  • Thermal properties
  • Thermal stability
  • thermomechanical properties
  • thermoplastic starch
  • Tissue Engineering
  • tuna skin by-product
  • turmeric essential oil
  • ultra-short functionalization of cell matrices
  • waste materials
  • water diffusion
  • wettability
  • Zinc oxide
  • “green” materials

Links

DOI: 10.3390/books978-3-0365-6491-3

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