Los Alamos National Laboratory , Los Alamos, New Mexico 87545, United States.
J Am Chem Soc. 2015 Feb 25;137(7):2506-23. doi: 10.1021/ja510067v. Epub 2015 Feb 17.
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).
Ln-Cl 键的共价性(Ln = Ce(III)、Nd(III)、Sm(III)、Eu(III)、Gd(III) 时,x = 3;Ln = Ce(IV) 时,x = 2)已经通过 Cl K 边 X 射线吸收光谱(XAS)和时间依赖密度泛函理论(TDDFT)进行了研究;然而,CeL3,2 边和 M5,4 边 XAS 也被用于表征 CeCl6(x-)(x = 2,3)。M5,4 边 XAS 光谱通过组态相互作用计算进行建模。结果作为以下两个方面的函数进行评估:(1)镧系元素(Ln)金属种类的变化,该系列从 Ce 到 Gd 变化;(2)Ln 氧化态(在可行的情况下,即 Ce(III) 和 Ce(IV))。观察到 Cl 3p-和 Ln 5d-轨道(t2g和 eg)之间明显的混合。实验结果表明,Ln 5d-轨道混合随着镧系元素系列的移动而减少。相反,将 Ce(III) 氧化为 Ce(IV) 对 Cl 3p 和 Ce 5d-轨道混合的影响很小。对于 LnCl6(3-)(形式上为 Ln(III)),4f 轨道仅在共价键合中略有参与,这与历史描述一致。令人惊讶的是,在 CeCl6(2-)中 Cl 3p 和 Ce(IV) 4f 轨道的混合(t1u* + t2u*)明显增加。这种出乎意料的 4f-和 5d-轨道参与共价键合的现象,在最近对四价过渡金属和锕系元素六卤化物 MCl6(2-)(M = Ti、Zr、Hf、U)的研究中得到了呈现。