Xin Tiansi, Wang Xinrui, Yang Kexin, Liang Jiefeng, Huang Wenliang
Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Rare Earth Material Chemistry and Application, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, P. R. China.
Inorg Chem. 2021 Oct 18;60(20):15321-15329. doi: 10.1021/acs.inorgchem.1c01922. Epub 2021 Sep 27.
A new tripodal tris(amido) ligand system featuring an arene anchor was developed and applied to the coordination chemistry of rare earth metals. Two tris(amido) ligands with a 1,3,5-triphenylbenzene backbone were prepared in two steps from commercially available reagents on a gram scale. Salt metathesis and alkane elimination reactions were exploited to prepare mononuclear rare earth metal complexes in moderate to good yields. For salt metathesis reactions, while metal tribromides yielded neutral metal tris(amido) complexes, metal trichlorides led to the formation of ate complexes with an additional chloride bound to the metal center. The new compounds were characterized by X-ray crystallography, elemental analysis, and H and C nuclear magnetic resonance spectroscopy. The rare earth metal complexes exhibit a trigonal planar coordination geometry for the [MN] fragment in the solid state rather than a trigonal pyramidal geometry, commonly observed for rare earth metal tris(amido) complexes such as M[N(SiMe)]. Moreover, the arene anchor of the tripodal ligands is engaged in a nonnegligible interaction with the rare earth metal ions. Density functional theory calculations were performed to gain insight into the bonding interactions between the tripodal ligands and the rare earth metal ions. While LUMOs of these rare earth metal complexes are mainly π* orbitals of the arene with a minor component of metal-based orbitals, HOMO-15 and HOMO-16 of a lanthanum complex show that the arene anchor serves as a π donor to the trivalent lanthanum ion.
开发了一种具有芳烃锚定基团的新型三脚架式三(酰胺基)配体体系,并将其应用于稀土金属的配位化学。以市售试剂为原料,分两步制备了两种具有1,3,5-三苯基苯骨架的三(酰胺基)配体,规模为克级。利用盐复分解反应和烷烃消除反应,以中等到良好的产率制备了单核稀土金属配合物。对于盐复分解反应,金属三溴化物生成中性金属三(酰胺基)配合物,而金属三氯化物则导致形成一种附加的氯与金属中心结合的配位化合物。通过X射线晶体学、元素分析以及氢和碳核磁共振光谱对新化合物进行了表征。稀土金属配合物在固态时,[MN]片段呈现三角平面配位几何构型,而非稀土金属三(酰胺基)配合物(如M[N(SiMe)])常见的三角锥几何构型。此外,三脚架配体的芳烃锚定基团与稀土金属离子存在不可忽略的相互作用。进行了密度泛函理论计算,以深入了解三脚架配体与稀土金属离子之间的键合相互作用。虽然这些稀土金属配合物的最低未占分子轨道主要是芳烃的π*轨道,金属基轨道占比小,但镧配合物的第15和第16最高已占分子轨道表明,芳烃锚定基团作为π供体与三价镧离子相互作用。