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膦基芳基氧化物的低价锕系-第10族金属配合物中的反向反式影响:通过调节金属和给体配体的理论研究

Inverse Trans Influence in Low-Valence Actinide-Group 10 Metal Complexes of Phosphinoaryl Oxides: A Theoretical Study via Tuning Metals and Donor Ligands.

作者信息

Bacha Raza Ullah Shah, Bi Yan-Ting, Xuan Li-Chun, Pan Qing-Jiang

机构信息

Key Laboratory of Functional Inorganic Material Chemistry (Ministry of Education), School of Chemistry and Materials Science , Heilongjiang University , Harbin 150080 , China.

出版信息

Inorg Chem. 2019 Aug 5;58(15):10028-10037. doi: 10.1021/acs.inorgchem.9b01193. Epub 2019 Jul 12.

Abstract

The recognition and in-depth understanding of inverse trans influence (ITI) have successfully guided the synthesis of novel actinide complexes and enriched actinide chemistry. Those complexes, however, are mainly limited to the involvement of high-valence actinide and/or metal-ligand multiple bonds. Examples containing both low oxidation state actinide and metal-metal single bond remain rare. Herein, more than 20 actinide-transition metal (An-TM) complexes of phosphinoaryl oxide ligands have been designed in accordance with several experimentally known analogs, by changing the metal atoms (An = Th, Pa, U, Np, and Pu; and TM = Ni, Pd, and Pt), actinide oxidation states (IV and III) and metal-metal axial donor ligands (X = MeSiO, F, Cl, Br, and I). The relativistic density functional theory study of structural (-An-X and -An-O toward An-TM), bonding (topological electron/energy density), and electronic properties reveals the order of the ITI stabilizing actinide-metal bond. Computed electron affinity (EA) values, related to the electrochemical reduction, linearly correlate with experimentally measured reduction potentials. Although the same ITI order for the ligand donors was shown as in a previous study, the correlation between electrochemical reduction and the ITI was found to be weak when the actinide atoms were changed. For most complexes, the reduction is primarily of an actinide-based mechanism with minor participation of transition metal and phosphinoaryl oxide, whereas that of thorium-nickel complexes is different.

摘要

对反式跨影响(ITI)的认识和深入理解成功地指导了新型锕系元素配合物的合成,并丰富了锕系元素化学。然而,这些配合物主要局限于高价锕系元素和/或金属-配体多重键的参与。同时含有低氧化态锕系元素和金属-金属单键的例子仍然很少。在此,根据几个实验已知的类似物,通过改变金属原子(An = Th、Pa、U、Np和Pu;TM = Ni、Pd和Pt)、锕系元素氧化态(IV和III)以及金属-金属轴向供体配体(X = MeSiO、F、Cl、Br和I),设计了20多种膦基芳基氧化物配体的锕系元素-过渡金属(An-TM)配合物。对结构(-An-X和-An-O与An-TM的关系)、键合(拓扑电子/能量密度)和电子性质的相对论密度泛函理论研究揭示了稳定锕系元素-金属键的ITI顺序。计算得到的与电化学还原相关的电子亲和能(EA)值与实验测量的还原电位呈线性相关。尽管配体供体的ITI顺序与先前的研究相同,但当改变锕系元素原子时,发现电化学还原与ITI之间的相关性较弱。对于大多数配合物,还原主要是基于锕系元素的机制,过渡金属和膦基芳基氧化物的参与较少,而钍-镍配合物的情况则不同。

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