4.7 Article

Ligand-Sensitive But Not Ligand-Diagnostic: Evaluating Cr Valence-to-Core X-ray Emission Spectroscopy as a Probe of Inner-Sphere Coordination

Journal

INORGANIC CHEMISTRY
Volume 54, Issue 1, Pages 205-214

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic502152r

Keywords

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Funding

  1. Cornell University
  2. National Institutes of Health from the National Institute of General Medical Sciences [T32GM008500]
  3. Oticon Foundation
  4. Knud Hojgaards Foundation
  5. National Science Foundation (NSF)
  6. National Institutes of Health/National Institute of General Medical Sciences under NSF [DMR-0936374]

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This paper explores the strengths and limitations of valence-to-core X-ray emission spectroscopy (V2C XES) as a probe of coordination environments. A library was assembled from spectra obtained for 12 diverse Cr complexes and used to calibrate density functional theory (DFT) calculations of V2C XES band energies. A functional dependence study was undertaken to benchmark predictive accuracy. All 7 functionals tested reproduce experimental V2C XES energies with an accuracy of 0.5 eV. Experimentally calibrated, DFT calculated V2C XES spectra of 90 Cr compounds were used to produce a quantitative spectrochemical series showing the V2C XES band energy ranges for ligands comprising 18 distinct classes. Substantial overlaps are detected in these ranges, which complicates the use of V2C XES to identify ligands in the coordination spheres of unknown Cr compounds. The ligand-dependent origins of V2C intensity are explored for a homologous series of [Cr(III)(NH3)(5)X](2+) (X = F, Cl, Br, and I) to rationalize the variable intensity contributions of these ligand classes.

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