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从实验和 CASSCF 计算研究理解镧系元素四联吡啶配合物的多组态基态和激发态。

Understanding the Multiconfigurational Ground and Excited States in Lanthanide Tetrakis Bipyridine Complexes from Experimental and CASSCF Computational Studies.

机构信息

Department of Chemistry , University of California , Berkeley , California 94720 , United States.

Chemical Sciences Division , Lawrence Berkeley National Laboratory , Berkeley , California 94720 , United States.

出版信息

Inorg Chem. 2019 Sep 16;58(18):12083-12098. doi: 10.1021/acs.inorgchem.9b01393. Epub 2019 Aug 28.

Abstract

An alternative synthesis for M(κ-bipy) (M = La, Ce) and [Li(thf)][M(κ-bipy)] (M = Tb, Dy) and the crystal structures for M = La, Ce, and Tb are described. The isomorphous and isostructural neutral molecules, M = La and Ce, are polymeric in the solid-state, as are those of M = Sm and Eu, which were reported in earlier work. The polymeric network is built from eight coordinate units whose geometry in all four cases is that of a square prism. The known molecules, M = Yb and Lu, are also polymeric, but the eight coordinate units have dodecahedral geometries. The structure of the anions in the separated ion pair, [Li(thf)][M(κ-bipy)], in which Tb is reported in this work and Lu is known, are monomeric with geometries that are between that of a square antiprism and a dodecahdron. The electronic structure, from CASSCF multireference quantum mechanical calculations, shows that the electronic ground states for M = La and Lu are multiconfigurational spin doublets and those for the M = Ce and Yb are multiconfigurational spin triplets. This is confirmed by magnetic susceptibility studies as a function of temperature that are consistent with the metals (La, Ce, Sm, Tb, Dy, Yb, and Lu) being trivalent, as are the L-edge XANES spectra (Ce, Yb), and divalent for Eu. The multiconfigurational nature of the ground states, developed from CASSCF molecular orbital calculations, renders a single Lewis structure and a single reference molecular orbital representation misleading. The results from the multireference calculations are extended to the other lanthanide molecules and are the genesis of a new model for understanding the magnetic properties of these molecules.

摘要

描述了 M(κ-bipy)(M = La、Ce)和[Li(thf)][M(κ-bipy)](M = Tb、Dy)的另一种合成方法,以及 M = La、Ce 和 Tb 的晶体结构。同晶和等结构的中性分子 M = La 和 Ce 在固态中是聚合物,Sm 和 Eu 的也是,这些在早期工作中已有报道。聚合物网络由八个配位单元构建而成,在所有四个案例中,这些单元的几何形状都是正方棱柱体。已知的分子 M = Yb 和 Lu 也是聚合物,但八个配位单元具有十二面体几何形状。在分离的离子对[Li(thf)][M(κ-bipy)]中,阴离子的结构在本工作中报道了 Tb 的结构,Lu 的已知结构也是单体,其几何形状介于正方反棱柱体和十二面体之间。来自 CASSCF 多参考量子力学计算的电子结构表明,M = La 和 Lu 的电子基态是多组态自旋双重态,而 M = Ce 和 Yb 的电子基态是多组态自旋三重态。这通过温度相关的磁化率研究得到证实,这些研究结果与金属(La、Ce、Sm、Tb、Dy、Yb 和 Lu)为三价一致,这与 L 边 XANES 谱(Ce、Yb)一致,Eu 为二价。基态的多组态性质,由 CASSCF 分子轨道计算得出,使得单一的路易斯结构和单一的参考分子轨道表示具有误导性。多参考计算的结果扩展到其他镧系分子,并为理解这些分子的磁性性质提供了一种新的模型。

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