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Early Transition Metals Strengthen the B 2 Bond in MB 2 Complexes.

Dakota M MerrilesKimberly H TomchakChristopher NielsonMichael D Morse
Published in: Journal of the American Chemical Society (2022)
The bond dissociation energies of early transition metal diborides (M-B 2 , M = Sc, Ti, V, Y, Mo) have been measured by observation of the sharp onset of predissociation in a highly congested spectrum. Density functional and CCSD(T) ab initio calculations, extrapolated to the complete basis set limit, have been used to examine the electronic structure of these species. The computations demonstrate the formation of bonding orbitals between the metal d orbitals and the 1π u bonding orbitals of B 2 , leading to the transfer of metallic electron density into the bonding 1π u orbitals, strengthening both the M-B and B-B bonds in the molecule. This runs counter to most metal-ligand π interactions, where electron density is generally transferred into π antibonding orbitals of the ligand.
Keyphrases
  • density functional theory
  • transition metal
  • molecular dynamics
  • electron transfer
  • health risk
  • solar cells
  • risk assessment
  • drinking water
  • electron microscopy
  • solid state