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A Dipleiadiene-Embedded Aromatic Saddle Consisting of 86 Carbon Atoms.

Sai Ho PunChi Kit ChanJiye LuoZhifeng LiuQian Miao
Published in: Angewandte Chemie (International ed. in English) (2018)
This study presents a new type of negatively curved nanographene (C86 H32 ) that contains an unprecedented pattern of heptagons. A tert-butylated derivative of C86 H32 was successfully synthesized using tetrabenzodipleiadiene as a key building block. This synthesis involved a ring expansion reaction as a key step to form the seven-membered rings in the framework of tetrabenzodipleiadiene. The single-crystal structure reveals a saddle-shaped molecule with a highly bent naphthalene moiety at the center of the polycyclic backbone. As found from the DFT calculations, this aromatic saddle is flexible at room temperature and has a saddle-shaped geometry as the dominant conformation. The DFT calculations along with experimental results show that the attachment of t-butyl groups to the central tetrabenzodipleiadiene moiety of nanographene C86 H32 can stabilize the saddle conformation and make this nanographene less flexible.
Keyphrases
  • crystal structure
  • density functional theory
  • room temperature
  • molecular dynamics simulations
  • molecular dynamics
  • molecular docking
  • amino acid
  • ionic liquid
  • monte carlo
  • water soluble