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具有双磁弛豫过程的多层酞菁双核镧系元素(III)单分子磁体。

Multiple-decker phthalocyaninato dinuclear lanthanoid(III) single-molecule magnets with dual-magnetic relaxation processes.

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, 6-3 Aramaki-Aza-Aoba, Sendai, Miyagi 980-8578, Japan.

出版信息

Dalton Trans. 2012 Nov 28;41(44):13582-600. doi: 10.1039/c2dt31400b. Epub 2012 Aug 21.

Abstract

The SMM behaviour of dinuclear Ln(III)-Pc multiple-decker complexes (Ln = Tb(3+) and Dy(3+)) with energy barriers and slow-relaxation behaviour were explained by using X-ray crystallography and static and dynamic susceptibility measurements. In particular, interactions among the 4f electrons of several dinuclear Ln(III)-Pc type SMMs have never been discussed on the basis of the crystal structure. For dinuclear Tb(III)-Pc complexes, a dual magnetic relaxation process was observed. The relaxation processes are due to the anisotropic centres. Our results clearly show that the two Tb(3+) ion sites are equivalent and are consistent with the crystal structure. On the other hand, the mononuclear Tb(III)-Pc complex exhibited only a single magnetic relaxation process. This is clear evidence that the magnetic relaxation mechanism depends heavily on the dipole-dipole (f-f) interactions between the Tb(3+) ions in the dinuclear systems. Furthermore, the SMM behaviour of dinuclear Dy(III)-Pc type SMMs with smaller energy barriers compared with that of Tb(III)-Pc and slow-relaxation behaviour was explained. Dinuclear Dy(III)-Pc SMMs exhibited single-component magnetic relaxation behaviour. The results indicate that the magnetic relaxation properties of dinuclear Ln(III)-Pc multiple-decker complexes are affected by the local molecular symmetry and are extremely sensitive to tiny distortions in the coordination geometry. In other words, the spatial arrangement of the Ln(3+) ions (f-f interactions) in the crystal is important. Our work shows that the SMM properties can be fine-tuned by introducing weak intermolecular magnetic interactions in a controlled SMM spatial arrangement.

摘要

利用 X 射线晶体学、静态和动态磁化率测量,解释了双核 Ln(III)-Pc 多夹层配合物(Ln = Tb(3+)和 Dy(3+))的 SMM 行为,该配合物具有能垒和慢弛豫行为。特别是,几个双核 Ln(III)-Pc 型 SMMs 中的 4f 电子相互作用从未基于晶体结构进行过讨论。对于双核 Tb(III)-Pc 配合物,观察到双磁弛豫过程。弛豫过程归因于各向异性中心。我们的结果清楚地表明,两个 Tb(3+)离子位是等效的,与晶体结构一致。另一方面,单核 Tb(III)-Pc 配合物仅表现出单个磁弛豫过程。这清楚地表明,磁弛豫机制严重依赖于双核体系中 Tb(3+)离子之间的偶极-偶极(f-f)相互作用。此外,还解释了具有较小能垒和慢弛豫行为的双核 Dy(III)-Pc 型 SMMs 的 SMM 行为。双核 Dy(III)-Pc SMMs 表现出单组分磁弛豫行为。结果表明,双核 Ln(III)-Pc 多夹层配合物的磁弛豫性质受局部分子对称性的影响,并对配位几何形状的微小扭曲极其敏感。换句话说,Ln(3+)离子在晶体中的空间排列(f-f 相互作用)很重要。我们的工作表明,可以通过在受控的 SMM 空间排列中引入弱分子间磁相互作用来微调 SMM 特性。

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