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Experimental and theoretical investigations of four 3d-4f butterfly single-molecule magnets

机译:四种3d-4f蝴蝶单分子磁体的实验和理论研究

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摘要

The syntheses, structures, and characterization of four 3d-4f butterfly clusters are described. With different polyhydroxy Schiff-base ligands 2-(((2-hydroxy-3-methoxyphenyl) methylene) amino)-2-(hydroxymethyl)-1,3-propanediol (H4L1) and 2-(2,3-dihydroxpropyliminomethyl)-6-methoxyphenol (H3L2), three heterotetranuclear Ni(2)(II)Ln(2)(III) complexes ((Ni2Dy2III)-Dy-II-L-1 (1), (Ni2Tb2III)-Tb-II-L-2 (2), (Ni2Dy2III)-Dy-II-L-2 (3)) and one heterohexanuclear (Co2Dy4III)-Dy-III complex (4) were obtained. The three heterotetranuclear Ni(2)(II)Ln(2)(III) complexes display a central planar butterfly topology. The heterohexanuclear complex was built from butterfly (Co2Dy2III)-Dy-III clusters and two Dy-III ions by the bridging of pivalate. The vertices of the body positions of the butterfly are occupied by transition metal ions in all four complexes. Magnetic analyses indicate that the complexes exhibit typical single-molecule magnet behaviour with anisotropy barriers of 33.7 cm(-1), 60.3 cm(-1), 39.6 cm(-1), and 18.4 cm(-1) for 1-4, respectively. Ab initio calculations were performed on these complexes, and the low lying electronic structure of each Ln(III) (Ln = Dy, Tb) ion and the magnetic interactions were determined. It was found that the two Ln ions may have much more contribution to the total relaxation barrier through the stronger 3d-4f exchange couplings compared to weak Ln-Ln interactions.
机译:描述了四个3d-4f蝴蝶簇的合成,结构和特征。具有不同的多羟基席夫碱配体2-((((2-羟基-3-甲氧基苯基)亚甲基)氨基)-2-(羟甲基)-1,3-丙二醇(H4L1)和2-(2,3-二氢丙基丙基亚氨基甲基)- 6-甲氧基苯酚(H3L2),三种杂四核Ni(2)(II)Ln(2)(III)配合物((Ni2Dy2III)-Dy-II-L-1(1),(Ni2Tb2III)-Tb-II-L-参照图2(2),得到(Ni 2 Dy 2 III)-Dy-II-L-2(3))和一种杂六核(Co 2 Dy 4 III)-Dy-III络合物(4)。三个异四核镍(2)(II)Ln(2)(III)配合物显示中央平面蝴蝶拓扑。异六核配合物是由蝶形(Co2Dy2III)-Dy-III簇和两个Dy-III离子通过新戊酸酯的桥接而构建的。在所有四个配合物中,蝴蝶的身体位置的顶点被过渡金属离子占据。磁性分析表明,该配合物表现出典型的单分子磁体行为,其中1-4的各向异性势垒分别为33.7 cm(-1),60.3 cm(-1),39.6 cm(-1)和18.4 cm(-1),分别。对这些络合物进行了从头算计算,并确定了每个Ln(III)(Ln = Dy,Tb)离子的低电子结构和磁相互作用。研究发现,与弱的Ln-Ln相互作用相比,通过更强的3d-4f交换耦合,两个Ln离子对总弛豫势垒的贡献可能更大。

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