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Dual Gas-responsive Fluorescent Diblock Copolymer Synthesized via RAFT Polymerization.

Xiaozhen ZhangJinjin WangShijia ZhouShuangshuang SunXiaorong WangShengwei GuoFengyang Zhao
Published in: Journal of fluorescence (2022)
Stimulus-responsive polymers with luminescence properties have a wide range of applications in the fields of controlled drug release, fluorescent probes, and biological stents. In this paper, carbon dioxide (CO 2 )/oxygen (O 2 ) dual-responsive fluorescent diblock copolymers were synthesized by the reversible addition-fragmentation chain transfer (RAFT) polymerization method with two fluorescent monomers synthesized as its luminescence source, DEAEMA (CO 2 responsive monomer) and tFMA (O 2 responsive monomer). An experimental study demonstrated that the synthesized stimulus-responsive fluorescent polymer had a high sensitivity to CO 2 ; the double-responsive fluorescent diblock copolymer could form and achieve the reversal of polymer micelles in the aqueous solution when it was sequentially subjected to the introduction of CO 2 and O 2 .
Keyphrases
  • quantum dots
  • cancer therapy
  • living cells
  • drug release
  • drug delivery
  • carbon dioxide
  • label free
  • fluorescent probe
  • small molecule
  • mass spectrometry
  • ionic liquid
  • fluorescence imaging