Article Synopsis

  • The study investigated the covalency of Ln-Cl bonds in Oh-LnCl6(x-) anions using Cl K-edge X-ray absorption spectroscopy (XAS) and time-dependent density functional theory (TDDFT), analyzing the differences across lanthanide (Ln) metals and their oxidation states.
  • Results showed significant mixing between Cl 3p and Ln 5d-orbitals, with a decrease in this mixing as the metal changes from Ce to Gd and no substantial effect when transitioning Ce(III) to Ce(IV).
  • Notably, while 4f-orbitals showed minimal involvement in covalent bonding for Ln(III) compounds, there was an unexpected increase in orbital mixing

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Article Abstract

Covalency in Ln-Cl bonds of Oh-LnCl6(x-) (x = 3 for Ln = Ce(III), Nd(III), Sm(III), Eu(III), Gd(III); x = 2 for Ln = Ce(IV)) anions has been investigated, primarily using Cl K-edge X-ray absorption spectroscopy (XAS) and time-dependent density functional theory (TDDFT); however, Ce L3,2-edge and M5,4-edge XAS were also used to characterize CeCl6(x-) (x = 2, 3). The M5,4-edge XAS spectra were modeled using configuration interaction calculations. The results were evaluated as a function of (1) the lanthanide (Ln) metal identity, which was varied across the series from Ce to Gd, and (2) the Ln oxidation state (when practical, i.e., formally Ce(III) and Ce(IV)). Pronounced mixing between the Cl 3p- and Ln 5d-orbitals (t2g* and eg*) was observed. Experimental results indicated that Ln 5d-orbital mixing decreased when moving across the lanthanide series. In contrast, oxidizing Ce(III) to Ce(IV) had little effect on Cl 3p and Ce 5d-orbital mixing. For LnCl6(3-) (formally Ln(III)), the 4f-orbitals participated only marginally in covalent bonding, which was consistent with historical descriptions. Surprisingly, there was a marked increase in Cl 3p- and Ce(IV) 4f-orbital mixing (t1u* + t2u*) in CeCl6(2-). This unexpected 4f- and 5d-orbital participation in covalent bonding is presented in the context of recent studies on both tetravalent transition metal and actinide hexahalides, MCl6(2-) (M = Ti, Zr, Hf, U).

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http://dx.doi.org/10.1021/ja510067vDOI Listing

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