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Tetranuclear dysprosium single-molecule magnets: tunable magnetic interactions and magnetization dynamics through modifying coordination number

机译:四核脱镝单分子磁铁:通过修改协调数量可调磁相互作用和磁化动力学

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摘要

The study of mononuclear lanthanide-based systems, where the observed Single Molecule Magnets (SMMs) properties originate from the local magnetic anisotropy of the single lanthanide ion, has been extensively investigated in the literature. The case for polynuclear lanthanide SMMs becomes more challenging both experimentally and theoretically due to the complexity of such architectures involving interactions between the magnetic centers. Much interest was devoted to the study of the structural effect on the magnetic interactions and relaxation dynamics. However, the understanding of the structural influence on those two factors remains a difficult task. To address this issue, a system containing two structurally related tetranuclear Dy(III) SMMs, namely [Dy-4(L)(4)(OH)(2)(DMF)(4)(NO3)(2)]center dot 2(DMF)center dot(H2O) (1) and [Dy-4(L)(4)(OH)(2)(DMF)(2)(NO3)(2)] (2) (H2L = 2-(2-hydroxy-3-methoxybenzylideneamino)phenol), is introduced and investigated. Through modifying the ligands on the changeable coordination sites, the intramolecular magnetic interactions and relaxation dynamics in these two Dy(III) 4 SMMs can be tuned. Both complexes exhibit slow relaxation of their magnetization with a relaxation barrier of 114 K for complex 2 while a blocking temperature below 2 K is observed for complex 1. Ab initio calculations reveal that changes in coordination numbers and geometries on the Dy(III) sites can significantly affect the magnetic interactions as well as single-ion anisotropy. The combination of experimental work and ab initio calculations offers insight into the relationship between structures and magnetic properties and sheds light on the rational design of future polynuclear lanthanide SMMs with enhanced magnetic properties.
机译:在文献中,在观察到的单分子磁体的基于单核镧系元素的基于单分子磁铁(SMMS)性能的研究,在文献中已经广泛研究了单镧系元素的局部磁各向异性。由于涉及磁心之间的相互作用的这种架构的复杂性,多核镧系元素SMMS的情况变得更具挑战性。致力于研究对磁相互作用和松弛动力学的结构效应的兴趣。然而,对这两个因素的结构影响的理解仍然是一项艰巨的任务。为了解决这个问题,一种体系包含两个结构相关的四核Dy(III)Smms,即[DY-4(L)(4)(OH)(2)(DMF)(4)(NO3)(2)]中心点2(DMF)中心点(H 2 O)(1)和[DY-4(L)(4)(OH)(2)(DMF)(2)(2)(2)(2)(H2L = 2- (2-羟基-3-甲氧基苄基苯基氨基)苯酚)被引入并研究。通过改变可变的配体在可变的配位位点上,可以调整这两个DY(III)4 SMMS中的分子内磁相互作用和弛豫动态。两种复合物在络合物2的宽松屏障中表现出磁化的缓慢松弛,而复合物2的弛豫屏障,而复杂的1.ab initio计算揭示了Dy(iii)位点上的协调数和几何形状的变化显着影响磁相互作用以及单离子各向异性。实验工作和AB Initio计算的组合提供了对结构和磁性的关系的洞察,并在未来多核镧系元素的合理设计上脱光,具有增强的磁性。

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    Xian Polytech Univ Sch Text Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Northwest Univ Key Lab Synthet &

    Nat Funct Mol Chem Shaanxi Key Lab Physicoinorgan Chem Minist Educ Coll Chem &

    Mat Sci Xian 710127 Shaanxi Peoples R China;

    Univ Rennes CNRS ISCR UMR 6226 F-35000 Rennes France;

    Univ Rennes CNRS ISCR UMR 6226 F-35000 Rennes France;

    Univ Rennes CNRS ISCR UMR 6226 F-35000 Rennes France;

    Chinese Acad Sci Changchun Inst Appl Chem State Key Lab Rare Earth Resource Utilizat Changchun 130022 Jilin Peoples R China;

    Northwest Univ Key Lab Synthet &

    Nat Funct Mol Chem Shaanxi Key Lab Physicoinorgan Chem Minist Educ Coll Chem &

    Mat Sci Xian 710127 Shaanxi Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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