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酞菁负载的双核镧系配合物:镝(III)类似物中溶剂诱导的磁性质变化

Phthalocyanine supported dinuclear Ln complexes: the solvent-induced change of magnetic properties in dysprosium(iii) analogues.

作者信息

Ge Jing-Yuan, Wang Hai-Ying, Li Jing, Xie Jia-Ze, Song You, Zuo Jing-Lin

机构信息

State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210023, P. R. China.

出版信息

Dalton Trans. 2017 Mar 7;46(10):3353-3362. doi: 10.1039/c7dt00298j.

Abstract

Three dinuclear lanthanide complexes, [Ln(thd)Pc]·2CH (Hthd = 2,2,6,6-tetramethylheptanedione, Ln = Sm (1), Tb (2), Dy (3)), have been synthesized based on phthalocyanine (Pc). They can be reversibly transformed into [Ln(thd)Pc] (Ln = Sm (1'), Tb (2'), Dy (3')) via desolvation and resolvation of the lattice benzene molecules. This change generates dramatic influences on the structural and magnetic properties of the dysprosium analogue. In complex 3, one crystallographically independent metal center is observed, and it exhibits a single relaxation process of magnetization with an energy barrier of 55.7 K. Upon desolvation, the resulting complex 3' contains two types of metal centers, and shows the field-induced single-molecule magnetic behavior with two thermally activated magnetic relaxation processes. The anisotropy barriers for 3' are as high as 63.3 K and 109.6 K, respectively. This work confirms that the solvated molecules can finely tune the magnetic relaxation mechanisms.

摘要

基于酞菁(Pc)合成了三种双核镧系配合物,[Ln(thd)Pc]·2CH(Hthd = 2,2,6,6 - 四甲基庚二酮,Ln = Sm (1)、Tb (2)、Dy (3))。通过晶格苯分子的去溶剂化和再溶剂化,它们可可逆地转变为[Ln(thd)Pc](Ln = Sm (1')、Tb (2')、Dy (3'))。这种变化对镝类似物的结构和磁性产生了显著影响。在配合物3中,观察到一个晶体学独立的金属中心,它表现出单个磁化弛豫过程,能垒为55.7 K。去溶剂化后,所得配合物3'包含两种类型的金属中心,并显示出具有两个热激活磁弛豫过程的场诱导单分子磁行为。3'的各向异性能垒分别高达63.3 K和109.6 K。这项工作证实了溶剂化分子可以精细调节磁弛豫机制。

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