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Gradual Donor Stabilization of a Transient Ferrocene Bridged Bisphosphanyl Phosphenium Cation.

Roman FranzBalázs SzathmáriClemens BruhnZsolt KelemenRudolf Pietschnig
Published in: Inorganic chemistry (2023)
A transient phosphenium cation embedded into a [3]ferrocenophane scaffold was formed via chloride abstraction. The cation has been trapped with phosphane, carbene, and silylene donors resulting in stable adducts or bond activation of the ferrocenophane bridge. In the absence of donors, dimerization of the phosphenium cation to the corresponding dication is observed or P-C bond activation with migration of a substituent leading to a putative phosphoniodiphosphene. Using 1,3-di- tert -butylimidazol-2-silylene as the donor, further reaction of the initially formed chlorosilane leads to activation of a P-P bond of the ferrocenophane scaffold with ring expansion of the ansa-bridge. The donor formation and bonding situation are investigated by density functional theory calculations as well as experimental methods (e.g., NMR spectroscopy and X-ray crystallography).
Keyphrases
  • density functional theory
  • ionic liquid
  • molecular dynamics
  • tissue engineering
  • magnetic resonance imaging
  • biofilm formation
  • cystic fibrosis
  • electron transfer
  • blood brain barrier