AI Article Synopsis

  • - Doping polycyclic conjugated hydrocarbons with sulfur, particularly through thiophene, is gaining significance for developing new functional materials, with recent focus on thiopyran-containing helicenes.
  • - The study presents the synthesis and structural analysis of a unique double [7]helicene that features thiopyran, showing distinct propeller-shaped structures and impressive solid-state interactions.
  • - The synthesized helicene demonstrates notable deep-red to near-infrared fluorescence and favorable properties, making it a promising candidate for applications in photodynamic therapy and bioimaging, particularly through its chiral and photosensitizing abilities.

Article Abstract

Doping of polycyclic conjugated hydrocarbons (PCHs) with sulfur atoms is becoming more and more important as a means of creating unique functional materials. Recently, thiophene-containing multiple helicenes have garnered enormous attention due to their intriguing electronic and (chir)optical properties compared with carbohelicenes. However, the efficient synthesis of thiopyran-containing multiple helicenes and the underlying sulfur doping mechanisms are rather unexplored. Herein, the synthesis and structural analysis of a thiopyran-containing double [7]helicene 3 are reported. X-ray crystallographic analysis reveals 3 and its dication with C-symmetric propeller-shape structures and compact interactions in the solid state. 3 exhibits deep-red to near-infrared (NIR) fluorescence emission. Tunable aromaticity of the central benzene ring and thiopyran rings is found by chemical oxidation, which is further confirmed by nucleus-independent chemical shift (NICS), anisotropy of the induced current density (ACID) and harmonic oscillator model of aromaticity (HOMA) analysis. Furthermore, the chiral and photosensitizing characters of 3 are investigated. The excellent deep-red to NIR fluorescence, circularly polarized luminescence (CPL) and photosensitizing activities suggest that 3 can be used as an outstanding photosensitizer in photodynamic therapy (PDT) and bioimaging, especially paving the way for future CPL-PDT and CPL-bio-probe applications.

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Source
http://dx.doi.org/10.1002/anie.202412681DOI Listing

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