Lin Chao-Bin, Guo Ke-Ke, Guo Wen-Xiao, Wang Yi-Han, Wang Kai, Li Yan, Zhang Shu-Hua, Zhang Xiu-Qing, Zhang Yi-Quan, Liang Fu-Pei
Guangxi Key Laboratory of Electrochemical and Magnetochemical Functional Materials, College of Chemistry and Bioengineering, Guilin University of Technology, Guilin 541004, China.
Jiangsu Key Laboratory for NSLSCS, School of Physical Science and Technology, Nanjing Normal University, Nanjing 210023, China.
Inorg Chem. 2020 Dec 7;59(23):16924-16935. doi: 10.1021/acs.inorgchem.0c01956. Epub 2020 Nov 10.
By utilizing the 2-hydroxyisophthalic acid (HipO) ligand, 2D metal-organic frameworks (MOFs) featuring rare O-bridged [Ln]-magnetic building blocks (MBBs), [Ln(ipO)(DMF)(HO)] [Ln = Gd (), Dy (); DMF = ,-dimethylformamide], were rationally designed and synthesized. When the reaction solvents that behave as terminal ligands were changed, the coordination geometries of Ln ions and the arrangement fashion of [Ln]-MBBs for these MOFs were modified accordingly. Another type of 2D MOF of [Ln(ipO)(HO)]·2HO [Ln = Gd (), Dy ()] was thus obtained. MOFs and exhibited favorable magnetocaloric effect, whose maximum -Δ values reach 30.0 and 31.7 J kg K, respectively. None of the single-molecule-magnet (SMM) behavior was observed in . However, from to , the change of the terminal coordinated solvents brought obvious improvement of the magnetic properties. MOF showed interesting relaxation behavior, in which dual relaxation was only visible under weak direct-current fields, and its highest effective energy barrier () reached up to 243 K. Ab initio calculations revealed the tuning mechanism of the terminal coordinated solvents. Their change optimized the arrangements of the magnetic axis of the Dy centers in both each MBB and the whole framework, thus improving the magnetic anisotropy and magnetic interactions of the system. Significantly, within the [Dy]-MBBs of , the angle made by the individual magnetic axis and Dy···Dy' line is nearly 0°. This case favoring a high SMM performance not only was scarcely achieved in discrete {Ln}-SMMs with numerous members but also has never been observed in any MBB-based MOFs as far as we know.
通过利用2-羟基间苯二甲酸(HipO)配体,合理设计并合成了具有罕见O桥联[Ln]磁性构筑单元(MBB)的二维金属有机框架(MOF),即[Ln(ipO)(DMF)(H₂O)] [Ln = Gd (1), Dy (2); DMF = N,N-二甲基甲酰胺]。当作为端基配体的反应溶剂改变时,这些MOF中Ln离子的配位几何结构以及[Ln]-MBB的排列方式也相应改变。由此得到了另一种类型的二维MOF [Ln(ipO)(H₂O)]·2H₂O [Ln = Gd (1), Dy (2)]。MOF 1和2表现出良好的磁热效应,其最大-ΔS值分别达到30.0和31.7 J kg⁻¹ K⁻¹。在1中未观察到单分子磁体(SMM)行为。然而,从1到2,端基配位溶剂的变化使磁性能有了明显改善。MOF 2表现出有趣的弛豫行为,其中双弛豫仅在弱直流场下可见,其最高有效能垒(Ueff)高达243 K。从头算计算揭示了端基配位溶剂的调控机制。它们的变化优化了每个MBB以及整个框架中Dy中心磁轴的排列,从而改善了体系的磁各向异性和磁相互作用。值得注意的是,在2的[Dy]-MBB中,单个磁轴与Dy···Dy'线所成的角度接近0°。这种有利于高SMM性能的情况不仅在众多离散的{Ln}-SMM中很少实现,而且据我们所知在任何基于MBB的MOF中都从未观察到。