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Emerging Functions of Nano-Organized Polysaccharides

Emerging Functions of Nano-Organized Polysaccharides

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Natural polysaccharides, such as cellulose and chitin, possess unique hierarchical nanoarchitectures that can never be artificially reconstructed, and their nano-organized structures are involved in the hidden materials functions with great potential. Pioneering the emerging functions of nano-organized polysaccharides will break through to achieve the Sustainable Development Goals.

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Keywords

  • 3D porous nanocarbon
  • aerogels
  • aqueous process
  • bacterial cellulose
  • Biomedical applications
  • cell culture scaffold
  • cellulose derivatives
  • cellulose nanocrystal
  • cellulose nanofiber
  • cellulose nanofibers
  • chitin nanofiber
  • chitosan−ZnCl2 complex
  • cholesteric liquid crystal
  • cryogels
  • Crystal structure
  • deacetylated chitin
  • dehydrogenative polymer
  • doxorubicin
  • enzymatic radical coupling
  • flame-retardant
  • freeze-drying
  • functional materials
  • functional nanocomposite
  • hemicellulose
  • Hydrogels
  • intraperitoneal chemotherapy
  • lignin
  • material form
  • microsphere
  • n/a
  • nanocellulose
  • nanocomposite
  • nanocrystal
  • nanofibrillated bacterial cellulose
  • nanopaper
  • paper electronic device
  • paper-based light-emitting device
  • peritoneally disseminated gastric cancer
  • Pickering emulsion
  • polydopamine doping
  • powder electroluminescent device
  • pyrolysis
  • skin repair
  • sol–gel
  • supercapacitor
  • surface carboxylation
  • surface deacetylation
  • Technology, engineering, agriculture
  • Technology: general issues
  • TEMPO-oxidized cellulose nanofiber
  • thermal diffusivity
  • Wound healing
  • X-ray fiber diffraction
  • xerogel
  • xylan

Links

DOI: 10.3390/books978-3-0365-4043-6

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