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Multiresponsive tetrarylethylene-based fluorescent dye with multicoloreded changes: AIEE properties, acidichromism, Al 3+ recognition, and applications.

Yanqun MuHuanhuan FanMengyuan LiRenjie WangZhao ChenCongbin FanGang LiuShouzhi Pu
Published in: Journal of materials chemistry. B (2022)
A novel fluorescent sensor BTAE-PA containing two tetrarylethylene (TAE) units linked through pyrimidine-2-amine was prepared, and its optical properties were systematically studied. BTAE-PA exhibited a typical aggregation-induced emission enhancement behavior, and its fluorescent properties could be efficiently modulated by acid/base and metal ions in THF. The protonated effect could induce significant acidichromism and 'turn-on' near-infrared emission with a large Stokes shift (Δ λ = 225 nm). Furthermore, BTAE-PA was highly selective toward Al 3+ with significant absorption (yellow → orange) and fluorescence (green → red) changes. A Job's plot established the 1 : 1 stoichiometry of the complex formation between BTAE-PA and Al 3+ , and the limit of detection for Al 3+ was determined to be 1.30 × 10 -7 mol L -1 . Finally, we also demonstrated that BTAE-PA could be made into test paper strips for 'naked-eye' detection of acid/Al 3+ , and fluorescence imaging experiments proved that BTAE-PA is capable of achieving cell imaging with good biocompatibility. Therefore, the multi-stimuli-responsive and multicoloured display performance of BTAE-PA endows the material with potential applications in security ink, acid/Al 3+ sensing, and bio-imaging.
Keyphrases
  • fluorescence imaging
  • quantum dots
  • living cells
  • label free
  • high resolution
  • photodynamic therapy
  • fluorescent probe
  • stem cells
  • mesenchymal stem cells
  • sensitive detection
  • cancer therapy
  • solid state
  • global health