Login / Signup

From starphenes to non-benzenoid linear conjugated polymers by substrate templating.

Mohammed S G MohammedJames LawrenceFátima GarcíaPedro BrandimarteAlejandro Berdonces-LayuntaDolores PérezDaniel Sánchez-PortalDiego PeñaDimas G de Oteyza
Published in: Nanoscale advances (2021)
Combining on-surface synthetic methods with the power of scanning tunneling microscopy to characterize novel materials at the single molecule level, we show how to steer the reactivity of one anthracene-based precursor towards different product nanostructures. Whereas using a Au(111) surface with three-fold symmetry results in the dominant formation of a starphene derivative, the two-fold symmetry of a reconstructed Au(110) surface allows the selective growth of non-benzenoid linear conjugated polymers. We further assess the electronic properties of each of the observed product structures via tunneling spectroscopy and DFT calculations, altogether advancing the synthesis and characterization of molecular structures of notable scientific interest that have been only scarcely investigated to date, as applies both to starphenes and to non-benzenoid conjugated polymers.
Keyphrases
  • single molecule
  • atomic force microscopy
  • high resolution
  • photodynamic therapy
  • living cells
  • density functional theory
  • sensitive detection
  • molecular docking
  • visible light