Covalency in Lanthanides. An X‑ray Absorption Spectroscopy and Density Functional Theory Study of LnCl<sub>6</sub><sup><i>x</i>–</sup> (<i>x</i> = 3, 2)

  • Matthias W. Löble (1649536)
  • Jason M. Keith (1649533)
  • Alison B. Altman (1649530)
  • S. Chantal E. Stieber (1338675)
  • Enrique R. Batista (1342752)
  • Kevin S. Boland (1615048)
  • Steven D. Conradson (1592485)
  • David L. Clark (1592503)
  • Juan Lezama Pacheco (1618798)
  • Stosh A. Kozimor (1615057)
  • Richard L. Martin (1295244)
  • Stefan G. Minasian (1649539)
  • Angela C. Olson (1649527)
  • Brian L. Scott (1455997)
  • David K. Shuh (1649524)
  • Tolek Tyliszczak (1372101)
  • Marianne P. Wilkerson (1592473)
  • Ralph A. Zehnder (1649521)
Publication date
February 2015

Abstract

Covalency in Ln–Cl bonds of <i>O</i><sub><i>h</i></sub>-LnCl<sub>6</sub><sup><i>x</i>–</sup> (<i>x</i> = 3 for Ln = Ce<sup>III</sup>, Nd<sup>III</sup>, Sm<sup>III</sup>, Eu<sup>III</sup>, Gd<sup>III</sup>; <i>x</i> = 2 for Ln = Ce<sup>IV</sup>) anions has been investigated, primarily using Cl K-edge X-ray absorption spectroscopy (XAS) and time-dependent density functional theory (TDDFT); however, Ce L<sub>3,2</sub>-edge and M<sub>5,4</sub>-edge XAS were also used to characterize CeCl<sub>6</sub><sup><i>x</i>–</sup> (<i>x</i> = 2, 3). The M<sub>5,4</sub>-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 se...

Extracted data

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