镎
化学
超铀元素
锕系元素
镧系元素
氧化态
金属有机化学
第2组金属有机化学
共价键
金属
分子
铀
配体(生物化学)
配位复合体
无机化学
计算化学
组合化学
有机化学
离子
晶体结构
冶金
材料科学
受体
生物化学
作者
Michał Dutkiewicz,Joy H. Farnaby,Christos Apostolidis,Éric Colineau,Olaf Walter,Nicola Magnani,Michael G. Gardiner,Jason B. Love,Nikolas Kaltsoyannis,R. Caciuffo,Polly L. Arnold
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2016-05-23
卷期号:8 (8): 797-802
被引量:105
摘要
Studies of transuranic organometallic complexes provide a particularly valuable insight into covalent contributions to the metal–ligand bonding, in which the subtle differences between the transuranium actinide ions and their lighter lanthanide counterparts are of fundamental importance for the effective remediation of nuclear waste. Unlike the organometallic chemistry of uranium, which has focused strongly on UIII and has seen some spectacular advances, that of the transuranics is significantly technically more challenging and has remained dormant. In the case of neptunium, it is limited mainly to NpIV. Here we report the synthesis of three new NpIII organometallic compounds and the characterization of their molecular and electronic structures. These studies suggest that NpIII complexes could act as single-molecule magnets, and that the lower oxidation state of NpII is chemically accessible. In comparison with lanthanide analogues, significant d- and f-electron contributions to key NpIII orbitals are observed, which shows that fundamental neptunium organometallic chemistry can provide new insights into the behaviour of f-elements. Probing the chemistry of transuranic elements is notoriously challenging. Now, three neptunium(III) organometallic sandwich complexes have been prepared using a flexible macrocycle as ligand, and their molecular and electronic structures characterized, adding to our understanding of the behaviour of f-elements and suggesting that the lower oxidation state Np(II) may be chemically accessible.
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