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镧(III)/铈(III)- 四价元素酸根配合物的结构、光谱及键合分析

Structural, Spectroscopic, and Bonding Analyses of La(III)/Ce(III)-Tetrel Ate-Complexes.

作者信息

Pan Xiaowei, Wu Changjiang, Fang Huayi, Yan Chunhua

机构信息

School of Materials Science and Engineering, Tianjin Key Lab for Rare Earth Materials and Applications, Nankai University, Tianjin 300350, China.

College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, China.

出版信息

Inorg Chem. 2023 Apr 10;62(14):5660-5668. doi: 10.1021/acs.inorgchem.3c00204. Epub 2023 Mar 24.

Abstract

In comparison with the research of transition-metal-tetrel complexes, the chemistry of lanthanide tetrel complexes, especially for these bearing heavier tetrel element ligands, is still relatively underexplored. In this research, K[CpLn(III)CHPh], [(DME)Li][CpLn(III)GePh], and [(DME)Li][CpLn(III)SnPh] [Ln(III) = La(III), Ce(III)] have been synthesized by reacting [(DME)Na][CpLa(-Cl)LaCp] or CpCe(THF) with alkali metal alkyl, germyl, and stannyl reagents. Additionally, [(DME)Li][CpCe(III)SnPh] is the first example of Ce(III)-Sn bond containing complex. All the obtained early Ln(III) tetrel ate-complexes were structurally analyzed by single-crystal X-ray diffraction. The formal shortness ratios of the Ln(III)-C, Ln(III)-Ge, and Ln(III)-Sn bonds are in the range of 1.03-1.11. Together with the previously reported [(DME)Li][CpLn(III)SiPh], a group of tetrel (up to Sn) lanthanocene ate-complexes with an analogous coordination pattern are presented. Computational studies suggest the strongly polarized nature of the Ln(III)-E (E = C, Si, Ge, Sn) bonds in these complexes, with 77-85% atomic orbital contribution from tetrel elements and 15-23% atomic orbital contribution from Ln(III). The UV-vis measurements of this series of complexes show that the characteristic absorptions are hypsochromically shifted for Ln(III) heavier tetrel complexes in comparison to their lighter congeners. Moreover, the HOMOs, in which the Ln(III)-E -bonding orbitals are the dominant components, of these series complexes act as donor orbitals of the major electron transitions, as being disclosed by the time-dependent density functional theory analysis.

摘要

与过渡金属-四价元素配合物的研究相比,镧系四价元素配合物的化学,特别是那些含有较重四价元素配体的配合物,仍然相对未被充分探索。在本研究中,通过使[(DME)Na][CpLa(−Cl)LaCp]或CpCe(THF)与碱金属烷基、锗基和锡基试剂反应,合成了K[CpLn(III)CHPh]、[(DME)Li][CpLn(III)GePh]和[(DME)Li][CpLn(III)SnPh] [Ln(III) = La(III), Ce(III)]。此外,[(DME)Li][CpCe(III)SnPh]是含Ce(III)-Sn键配合物的首个例子。所有得到的早期Ln(III)四价元素酸根配合物均通过单晶X射线衍射进行了结构分析。Ln(III)-C、Ln(III)-Ge和Ln(III)-Sn键的形式缩短率在1.03 - 1.11范围内。连同先前报道的[(DME)Li][CpLn(III)SiPh],展示了一组具有类似配位模式的四价元素(直至Sn)镧茂酸根配合物。计算研究表明这些配合物中Ln(III)-E(E = C、Si、Ge、Sn)键具有强极化性质,四价元素的原子轨道贡献为77 - 85%,Ln(III)的原子轨道贡献为15 - 23%。该系列配合物的紫外-可见光谱测量表明,与较轻同系物相比,Ln(III)较重四价元素配合物的特征吸收发生了紫移。此外,如含时密度泛函理论分析所揭示的,这些系列配合物的最高占据分子轨道(HOMOs)中,Ln(III)-E成键轨道是主要成分,充当主要电子跃迁的供体轨道。

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