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Doubly linked chiral phenanthrene oligomers for homogeneously π-extended helicenes with large effective conjugation length.

Yusuke NakakukiTakashi HiroseHikaru SotomeMin GaoDaiki ShimizuRuiji LiJun-Ya HasegawaHiroshi MiyasakaKenji Matsuda
Published in: Nature communications (2022)
Helically twisted conductive nanocarbon materials are applicable to optoelectronic and electromagnetic molecular devices working on the nanometer scale. Herein, we report the synthesis of per-peri-perbenzo[5]- and [9]helicenes in addition to previously reported π-extended [7]helicene. The homogeneously π-extended helicenes can be regarded as helically fused oligo-phenanthrenes. The HOMO-LUMO gap decreased significantly from 2.14 to 1.15 eV with increasing helical length, suggesting the large effective conjugation length (ECL) of the π-extended helical framework. The large ECL of π-extended helicenes is attributed to the large orbital interactions between the phenanthrene subunits at the 9- and 10-positions, which form a polyene-like electronic structure. Based on the experimental results and DFT calculations, the ultrafast decay dynamics on the sub-picosecond timescale were attributed to the low-lying conical intersection.
Keyphrases
  • density functional theory
  • molecular dynamics
  • high frequency
  • molecular dynamics simulations
  • mass spectrometry
  • quantum dots
  • single molecule
  • energy transfer