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Synthesis and properties of novel type I photosensitizer polycyclic amide.

Kui WangTao YeHaoyang DuXiangyu JinXiaofen YiHuiying GaoYuan ZhangWei DongShihui LiuJing GuanFeng LinDebin Xia
Published in: Nanoscale advances (2023)
Herein, we have designed and synthesized a novel type-I photosensitizer (PhPA) via Rh-catalyzed oxidative cyclization of diacetoxyterephthalamide with alkynes. The photoelectric properties, photosensitivity and photodegradation process of PhPA have been systematically investigated. The remarkable fluorescence quenching effect ( Φ PL < 0.01) of PhPA suggests that the intersystem crossing from the singlet excited state to the reactive triplet state is enhanced by the enlarged conjugated backbone. Additionally, the ability of superoxide radical (O 2 - ˙) generation was confirmed by electron paramagnetic resonance spectroscopy. Finally, the mechanism of PhPA photo-oxidative degradation via the structure of two metabolites is proposed.
Keyphrases
  • energy transfer
  • photodynamic therapy
  • quantum dots
  • single molecule
  • ms ms
  • high resolution
  • hydrogen peroxide
  • room temperature
  • atomic force microscopy
  • mass spectrometry
  • nitric oxide
  • solid state