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异双金属3d-4f/5f配合物[TM-M{N(o-[NCHP(CH)]CH)}](TM = Cr、Mn、Fe;M = U、Np、Pu和Nd)中高键级金属-金属多重键的预测

Prediction of high bond-order metal-metal multiple-bonds in heterobimetallic 3d-4f/5f complexes [TM-M{N(o-[NCHP(CH)]CH)}] (TM = Cr, Mn, Fe; M = U, Np, Pu, and Nd).

作者信息

Hu Shu-Xian, Lu Erli, Liddle Stephen T

机构信息

Department of Physics, University of Science and Technology Beijing, Beijing 100083, China.

School of Chemistry and Centre for Radiochemistry Research, The University of Manchester, Oxford Road, Manchester M13 9PL, UK.

出版信息

Dalton Trans. 2019 Sep 14;48(34):12867-12879. doi: 10.1039/c9dt03086g. Epub 2019 Aug 7.

Abstract

Despite continuing and burgeoning interest in f-block complexes and their bonding chemistry in recent years, investigations of the electronic structures and oxidation states of heterobimetallic complexes, and their bonding features between transition-metals (TMs) and f-elements remain relatively less explored. Here, we report a quantum chemical computational study on the series of TM-actinide and -neodymium complexes [TMAn(L)] and [TMNd(L)] [An = U, Np, Pu; TM = Cr, Mn, Fe; L = {N(o-[NCHP(CH)]CH)}] in order to explore periodic trend, generalities and differences in the electronic structure and metal-metal bonding between f-block and d-block elements. Based on the calculations, we find up to five-fold covalent multiple bonding between actinide and transition metal ions, which is in sharp contrast with a single bond between neodymium and transition metals. From a comparative study, a general trend of strength of the An-TM interaction emerges in accordance with the atomic number of the actinide metal, which relates to the nature, energy level, and spatial arrangement of their frontier orbitals. The trend presents a valuable insight for future experimental endeavour searching for isolable complexes with strong and multiple An-TM bonding interactions, especially for the experimentally challenging transuranic elements that require targeted research due to their radioactive nature.

摘要

尽管近年来人们对f区配合物及其键合化学的兴趣持续增长且不断涌现,但对异双金属配合物的电子结构和氧化态以及它们在过渡金属(TM)和f元素之间的键合特征的研究仍相对较少。在此,我们报告了对一系列TM-锕系和-钕配合物[TMAn(L)]和[TMNd(L)] [An = U、Np、Pu;TM = Cr、Mn、Fe;L = {N(o-[NCHP(CH)]CH)}]的量子化学计算研究,以探索f区和d区元素在电子结构和金属-金属键合方面的周期性趋势、一般性和差异。基于计算,我们发现锕系元素与过渡金属离子之间存在高达五重的共价多重键,这与钕和过渡金属之间的单键形成鲜明对比。通过比较研究,根据锕系金属的原子序数出现了An-TM相互作用强度的一般趋势,这与它们的前沿轨道的性质、能级和空间排列有关。该趋势为未来寻找具有强且多重An-TM键合相互作用的可分离配合物的实验努力提供了有价值的见解,特别是对于由于其放射性性质而需要有针对性研究的具有实验挑战性的超铀元素。

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