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调节 Dy(III) 分子磁体中的磁相互作用。

Tuning the Magnetic Interactions in Dy(III) Single-Molecule Magnets.

机构信息

School of Textile Science and Engineering , Xi'an Polytechnic University , Xi'an 710048 , PR China.

Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of the Ministry of Education, Shaanxi Key Laboratory of Physico-Inorganic Chemistry, College of Chemistry & Materials Science , Northwest University , Xi'an , 710127 , PR China.

出版信息

Inorg Chem. 2018 Jul 16;57(14):8550-8557. doi: 10.1021/acs.inorgchem.8b01269. Epub 2018 Jul 3.

DOI:10.1021/acs.inorgchem.8b01269
PMID:29969252
Abstract

The study of mononuclear lanthanide-based systems, where the observed single-molecule magnets (SMMs) properties originate from the local description of the magnetic properties of the lanthanide ion, has been widely investigated through the literature. The case of polynuclear SMMs becomes more challenging both experimentally and theoretically due to the complexity of such architectures involving interactions between the magnetic centers. Many efforts have been focused on the understanding of the nature of these interactions and their effects on the SMM properties. In this work, a series of three structurally related tetranuclear dysprosium(III) SMMs, namely, [Dy(L)(OH)(DMF)(NO)]·2(DMF)·(HO) (1), [Dy(L)(OH)(DMF)(tfaa)]·2(CHCN) (2), and [Dy(L)(OH)(DMF)(acac)]·2(DMF) (3) (HL = 2-(2-hydroxy-3-methoxybenzylideneamino)phenol, Htfaa = trifluoroacetylactone, Hacac = acetylacetonate), has been synthesized and investigated. By a fine-tuning of the ligands on the changeable coordination sites in these Dy(III) SMMs, the intramolecular magnetic interactions can be modified, switching from antiferromagnetic (for 1 and 2) to ferromagnetic (for 3). Ab initio calculations support these statements. In addition, the formation of 1 has been analyzed by ESI-MS analysis of the reaction mixture, indicating rather quick and high-yield formation of the [Dy] framework in solution. The combination of experimental work and ab initio calculations offers further insight into the relationship between structures and magnetic properties and sheds light on how to tune magnetic interactions in future polynuclear dysprosium complexes.

摘要

单核镧系元素基体系的研究,其中观察到的单分子磁体(SMM)性质源自镧系离子磁性质的局部描述,通过文献得到了广泛的研究。由于涉及磁心之间相互作用的此类结构的复杂性,多核 SMM 的情况在实验和理论上都变得更具挑战性。许多努力都集中在理解这些相互作用的性质及其对 SMM 性质的影响上。在这项工作中,合成并研究了一系列三个结构相关的四核镝(III)SMM,即[Dy(L)(OH)(DMF)(NO)]·2(DMF)·(HO)(1),[Dy(L)(OH)(DMF)(tfaa)]·2(CHCN)(2)和[Dy(L)(OH)(DMF)(acac)]·2(DMF)(3)(HL=2-(2-羟基-3-甲氧基苄叉基氨基)苯酚,Htfaa=三氟乙酰丙酮,Hacac=乙酰丙酮)。通过微调这些镝(III)SMM 中可替换配位位点上的配体,可以修饰分子内磁相互作用,从反铁磁(对于 1 和 2)转变为铁磁(对于 3)。从头算计算支持这些说法。此外,通过对反应混合物的 ESI-MS 分析,对 1 的形成进行了分析,表明在溶液中快速且高产率地形成了[Dy]骨架。实验工作和从头算计算的结合为结构与磁性质之间的关系提供了进一步的深入了解,并阐明了如何在未来的多核镝配合物中调节磁相互作用。

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