Self-assembly behavior and pH-stimuli-responsive property of POSS-based amphiphilic block copolymers in solution

Y Xu, K He, H Wang, M Li, T Shen, X Liu, C Yuan, L Dai - Micromachines, 2018 - mdpi.com
Y Xu, K He, H Wang, M Li, T Shen, X Liu, C Yuan, L Dai
Micromachines, 2018mdpi.com
Stimuli-responsive polymeric systems containing special responsive moieties can undergo
alteration of chemical structures and physical properties in response to external stimulus.
We synthesized a hybrid amphiphilic block copolymer containing methoxy polyethylene
glycol (MePEG), methacrylate isobutyl polyhedral oligomeric silsesquioxane (MAPOSS) and
2-(diisopropylamino) ethyl methacrylate (DPA) named MePEG-bP (MAPOSS-co-DPA) via
atom transfer radical polymerization (ATRP). Spherical micelles with a core-shell structure …
Stimuli-responsive polymeric systems containing special responsive moieties can undergo alteration of chemical structures and physical properties in response to external stimulus. We synthesized a hybrid amphiphilic block copolymer containing methoxy polyethylene glycol (MePEG), methacrylate isobutyl polyhedral oligomeric silsesquioxane (MAPOSS) and 2-(diisopropylamino)ethyl methacrylate (DPA) named MePEG-b-P(MAPOSS-co-DPA) via atom transfer radical polymerization (ATRP). Spherical micelles with a core-shell structure were obtained by a self-assembly process based on MePEG-b-P(MAPOSS-co-DPA), which showed a pH-responsive property. The influence of hydrophobic chain length on the self-assembly behavior was also studied. The pyrene release properties of micelles and their ability of antifouling were further studied.
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