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Polymers and Ionic Liquids
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The main objective of polymer materials scientists is to develop and design high performance polymer-based materials via the introduction of block copolymers, ionomers or inorganic-organic hybrids, in order to introduce functionalities such as mechanical reinforcement, gas barrier properties, fire retardancy, shape memory behavior or self-healing ability. In the last ten years, ionic liquids have demonstrated huge potential as new components within polymer-based materials, leading to a wide range of applications. Due to their many physical-chemical properties, as well as their various possible combinations, ionic liquids represent a new path to produce multifunctional materials.

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Keywords

  • 4-nonylphenol
  • adsorption
  • biodegradable polymer
  • Crazing
  • cross-linker
  • crystallization behavior
  • electrochemical detection
  • electrolytes
  • fast response and recovery
  • free-ion concentration
  • high pressure
  • History of engineering & technology
  • humidity sensing
  • in-situ polymerization
  • ionic liquid
  • ionic liquids
  • IR spectroscopy
  • layered double hydroxide
  • Lithium salts
  • mechanical behavior
  • Microwave
  • nanocomposite
  • nanomaterials
  • Nucleation
  • Permeability
  • plasticizer
  • PMMA
  • poly (butylene adipate-co-terephthalate)
  • poly(ionic liquid)
  • poly(ionic liquid)s
  • polymerizable ionic liquid microemulsions
  • Polymers
  • polyoxymethylene
  • respiratory rate monitoring
  • silica
  • synthetic methods
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermal behavior
  • thermosets

Links

DOI: 10.3390/books978-3-03943-309-4

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