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Ab Initio Calculations of X-ray Spectra: Atomic Multiplet and Molecular Orbital Effects in a Multiconfigurational SCF Approach to the L-Edge Spectra of Transition Metal Complexes

  • Ida Josefsson
  • , Kristjan Kunnus
  • , Simon Schreck
  • , Alexander Foehlisch
  • , Frank de Groot
  • , Philippe Wernet
  • , Michael Odelius*
  • *Corresponding author for this work
    • Stockholm University
    • German Cancer Research Center
    • Utrecht University

    Research output: Contribution to journalArticleAcademicpeer-review

    Abstract

    A new ab initio approach to the calculation of X-ray spectra is demonstrated. It combines a high-level quantum chemical description of the chemical interactions and local atomic multiplet effects. We show here calculated L-edge X-ray absorption (XA) and resonant inelastic X-ray scattering spectra for aqueous Ni2+ and XA spectra for a polypyridyl iron complex. Our quantum chemical calculations on a high level of accuracy in a post-Hartree-Fock framework give excellent agreement with experiment. This opens the door to reliable and detailed information on chemical interactions and the valence electronic structure in 3d transition-metal complexes also in transient excited electronic states. As we combine a molecular-orbital description with a proper treatment of local atomic electron correlation effects, our calculations uniquely allow, in particular, identifying the influence of interatomic chemical interactions versus intra-atomic correlations in the L-edge X-ray spectra.

    Original languageEnglish
    Pages (from-to)3565-3570
    Number of pages6
    JournalJournal of Physical Chemistry Letters
    Volume3
    Issue number23
    DOIs
    Publication statusPublished - 6 Dec 2012

    Funding

    I.J. and M.O. acknowledge Ulf Wahlgren for numerous discussions and crucial assistance, Roland Lindh for fruitful discussions, and Nils Huse for sharing experimental spectra. The work has financial support from the Swedish Research Council (VR), the Carl Trygger Foundation, and the Magnus Bergvall Foundation.

    Keywords

    • ABSORPTION-SPECTROSCOPY
    • ELECTRONIC-STRUCTURE

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