Departament de Química Inorgànica i Orgànica, Secció de Química Inorgànica , Universitat de Barcelona , Diagonal 645 , 08028 Barcelona , Spain.
Institute of Chemical Research of Catalonia (ICIQ) , The Barcelona Institute of Science and Technology , Av. Països Catalans 16 , 43007 Tarragona , Spain.
Inorg Chem. 2018 Jul 16;57(14):8429-8439. doi: 10.1021/acs.inorgchem.8b01112. Epub 2018 Jul 3.
The preparation of heterometallic, lanthanide-only complexes is an extremely difficult synthetic challenge. By a ligand-based strategy, a complete isostructural series of dinuclear heterometallic [LnPr] complexes has been synthesized and structurally characterized. The two different coordination sites featured in this molecular entity allow study of the preferences of the praseodymium ion for a specific position depending on the ionic radii of the accompanying lanthanide partner. The purity of each heterometallic moiety has been evaluated in the solid state and in solution by means of crystallographic and spectrometric methods, respectively, revealing the limits of this strategy for ions with similar sizes. DFT calculations have been carried out to support the experimental results, confirming the nature of the site-selective lanthanide distribution. The predictable selectivity of this system has been exploited to assess the magnetic properties of the [DyPr] and [LuPr] derivatives, showing that the origin of the slow dynamics observed in the former arises from the dysprosium ion.
制备杂金属、仅镧系元素的配合物是一个极具挑战性的合成难题。通过配体策略,我们成功合成并结构表征了一系列完全同构的双核杂金属[LnPr]配合物。该分子实体中具有的两个不同配位位点可以研究镨离子在特定位置上对特定镧系元素配合物的偏好,这取决于伴随的镧系元素离子的离子半径。通过晶体学和光谱学方法分别在固态和溶液中评估每个杂金属部分的纯度,揭示了该策略对于具有相似尺寸的离子的局限性。进行了 DFT 计算以支持实验结果,证实了镧系元素分布的位选择性本质。该体系的可预测选择性已被用于评估[DyPr]和[LuPr]衍生物的磁性能,表明在前者中观察到的慢动力学的起源来自于镝离子。