X-ray absorption spectroscopy of exemplary platinum porphyrin and corrole derivatives: metal- versus ligand-centered oxidation
Permanent lenke
https://hdl.handle.net/10037/23240Dato
2021-09-30Type
Journal articleTidsskriftartikkel
Peer reviewed
Forfatter
Ghosh, AbhikSammendrag
A combination of Pt L3-edge X-ray absorption spectroscopy (EXAFS and XANES) and DFT (TPSS) calculations
have been performed on powder samples of the archetypal platinum porphyrinoid complexes
PtII[TpCF3PP], PtIV[TpCF3PP]Cl2, and PtIV[TpCF3PC](Ar)(py), where TpCF3PP2- = meso-tetrakis(p-trifluoromethylphenyl)porphyrinato and TpCF3PC3- = meso-tris(p-trifluoromethylphenyl)corrolato. The
three complexes yielded Pt L3-edge energies of 11 566.0 eV, 11 567.2 eV, and 11 567.6 eV, respectively.
The 1.2 eV blueshift from the Pt(II) to the Pt(IV) porphyrin derivative is smaller than expected for a formal
two-electron oxidation of the metal center. A rationale was provided by DFT-based Hirshfeld which
showed that the porphyrin ligand in the Pt(IV) complex is actually substantially oxidized relative to that in
the Pt(II) complex. The much smaller blueshift of 0.4 eV, going from PtIV[TpCF3PP]Cl2, and
PtIV[TpCF3PC](Ar)(py), is ascribable to the significantly stronger ligand field in the latter compound.
Forlag
Royal Society of ChemistrySitering
Ghosh. X-ray absorption spectroscopy of exemplary platinum porphyrin and corrole derivatives: metal- versus ligand-centered oxidation. RSC Advances. 2021Metadata
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