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Biocompatible poly(<i>N</i>-(ω-acryloyloxy-<i>n</i>-alkyl)-2-pyrrolidone)s with widely-tunable lower critical solution temperatures (LCSTs): a promising alternative to poly(<i>N</i>-isopropylacrylamide)
23
Citations
63
References
2022
Year
Macromolecular ChemistryEngineeringBiocompatible PolyResponsive PolymersPolymersPolymer MaterialPolymer TechnologyPolymer ProcessingForm CoacervatesPolymer ChemistryPromising AlternativePolymer EngineeringBiopolymersBiomolecular EngineeringMacromolecular SciencePolymer SolutionPolymer SciencePolymer CharacterizationPolymer ReactionPolymer Synthesis
The biocompatible (co)polymers undergoes a thermal stimulus-driven liquid–liquid phase separation and form coacervates above the lower critical solution temperature (LCST). The LCSTs are able to be precisely controlled between 0 °C and 100 °C.
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