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芳烃桥连二钍配合物:由δ键相互作用支撑的反夹心结构

Arene-Bridged Dithorium Complexes: Inverse Sandwiches Supported by a δ Bonding Interaction.

作者信息

Yu Chao, Liang Jiefeng, Deng Chong, Lefèvre Guillaume, Cantat Thibault, Diaconescu Paula L, Huang Wenliang

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Rare Earth Material Chemistry and Application, Radiochemistry and Radiation Chemistry Key Laboratory of Fundamental Science, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, P. R. China.

i-CLeHS CSB2D, CNRS/Chimie ParisTech, 11 Rue Pierre et Marie Curie, 75005 Paris, France.

出版信息

J Am Chem Soc. 2020 Dec 23;142(51):21292-21297. doi: 10.1021/jacs.0c11215. Epub 2020 Dec 14.

Abstract

A series of arene-bridged dithorium complexes was synthesized via the reduction by potassium graphite of a Th(IV) precursor in the presence of arenes. All these compounds adopt an inverse-sandwich structure, with the arene bridging two thorium centers in a μ-η,η-mode. Structural and spectroscopic data support the assignment of two Th(IV) ions and an arene tetraanion, which is an aromatic structure according to Hückel's rule. Arene exchange reactions revealed that the stability of the corresponding compounds follows the series naphthalene ≪ toluene < benzene ≈ biphenyl. Reactivity studies showed that they function as four-electron reductants capable to reduce anthracene, cyclooctatetraene, alkynes, and azobenzene, while a mononuclear thorium anthracene complex could reduce benzene. Density functional theory calculations unveiled that the bonding interactions consist of δ bonds between thorium 6d and 5f orbitals and arene π* orbitals, showing a significant covalent character, able to stabilize highly reduced arene ligands.

摘要

通过在芳烃存在下用石墨钾还原钍(IV)前体,合成了一系列芳烃桥连的二钍配合物。所有这些化合物都采用反夹心结构,芳烃以μ-η,η模式桥连两个钍中心。结构和光谱数据支持两个钍(IV)离子和一个芳烃四价阴离子的归属,根据休克尔规则,该芳烃四价阴离子是一种芳香结构。芳烃交换反应表明,相应化合物的稳定性遵循萘≪甲苯<苯≈联苯的顺序。反应性研究表明,它们作为四电子还原剂,能够还原蒽、环辛四烯、炔烃和偶氮苯,而单核钍蒽配合物可以还原苯。密度泛函理论计算表明,键合相互作用由钍6d和5f轨道与芳烃π*轨道之间的δ键组成,具有显著的共价性质,能够稳定高度还原的芳烃配体。

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