Login / Signup

One-pot asymmetric living copolymerization-induced chiral self-assemblies and circularly polarized luminescence.

Run-Tan GaoShi-Yi LiBing-Hao LiuZheng ChenNa LiuLi ZhouZong-Quan Wu
Published in: Chemical science (2024)
Controlled synthesis of conjugated block polymers enables the optimization of their self-assembly and may lead to distinct optical properties and functionalities. Herein, we report a direct chain extension of one-handed helical poly(acyl methane) with 1-ethynyl-4-iodo-2,5-bis(octyloxy)benzene, affording well-defined π-conjugated poly(acyl methane)- b -poly(phenylene ethynylene) copolymers. Although the distinct monomers are polymerized via different mechanisms, the one-pot copolymerization follows a living polymerization manner, giving the desired optically active block copolymers with controllable molar mass and low distribution. The block copolymerization induced chiral self-assembly simultaneously due to the one-handed helicity of the poly(acyl methane) block, giving spherical nanoparticles, one-handed helices, and chiral micelles with controlled dimensions regarding the composition of the generated copolymers. Interestingly, the chiral assemblies exhibit clear circularly polarized luminescence with tunable handedness and a high dissymmetric factor.
Keyphrases
  • ionic liquid
  • capillary electrophoresis
  • anaerobic digestion
  • high glucose
  • diabetic rats
  • energy transfer
  • quantum dots
  • photodynamic therapy
  • drug delivery
  • carbon dioxide
  • drug induced
  • mass spectrometry
  • light emitting