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Photon-Modulated Bond Covalency of [Sm(II)(η 9 -C 9 H 9 ) 2 ].

Tonya VitovaH RamanantoaninaBianca SchacherlL MünzfeldA HauserRuwini S K EkanayakeC Y ReitzTim PrüßmannThomas S NeillJ GöttlicherR SteiningerViktoriia A SavelevaMaurits W HaverkortPeter W Roesky
Published in: Journal of the American Chemical Society (2024)
Lanthanides are widely assumed not to form covalent bonds due to the localized nature of their 4f valence electrons. This work demonstrates that the ionic bond of Sm(II) with cyclononatetraenyl (η 9 -C 9 H 9 - ) in [Sm(η 9 -C 9 H 9 ) 2 ] can be modulated and becomes more covalent by photon-induced transfer of Sm 4f electrons to Sm 5d orbitals. This photon-induced change in bonding properties facilitates a subsequent reconfiguration of [Sm(η 9 -C 9 H 9 ) 2 ]. As a result, Sm-C bond length contraction is detected and the local Sm coordination environment exhibits more extensive disorder. Both Sm 4f and 5d electrons have increased participation in covalent Sm-ligand interactions. The Sm L 3 -edge valence band resonant inelastic X-ray scattering (VB-RIXS), high-resolution X-ray absorption near-edge structure (HR-XANES), and quantum chemical computations showcase a spectroscopic methodology for in-depth studies of bond covalency of lanthanide atoms.
Keyphrases
  • high resolution
  • magnetic resonance imaging
  • magnetic resonance
  • mass spectrometry
  • oxidative stress
  • molecular docking
  • optical coherence tomography
  • molecular dynamics simulations
  • energy transfer