You Zhonglu, Prsa Krunoslav, Mutschler Julius, Herringer Susan N, Wang Jiaqi, Luo Yingying, Zheng Boyang, Decurtins Silvio, Krämer Karl W, Waldmann Oliver, Liu Shi-Xia
Department of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, P. R. China.
Physikalisches Institut, Universität Freiburg, Hermann-Herder-Strasse 3, Freiburg D-79104, Germany.
ACS Omega. 2020 Dec 21;6(1):483-491. doi: 10.1021/acsomega.0c04930. eCollection 2021 Jan 12.
In the field of molecular nanoclusters, cubane and defect-dicubane, or butterfly structures, are typical examples of tetranuclear metal core architectures. In this work, a halogenated and anionic Schiff-base ligand (L) is utilized as it is predisposed to chelate within a cluster core to both 3d and 4f metal ions, in different binding configurations (HL = 4-chloro-2-(2-hydroxy-3-methoxybenzyliden amino)phenol). The phenolate oxygen atoms of the deprotonated ligand can act in μ-O and μ-O bridging binding modes for the intramolecular assembly of metal ions. Based on that, two tetranuclear and isostructural compounds [NiTb(L)(NO)(DMF)]·2CHCN () and [NiEr(L)(NO)(DMF)]·0.5CHCN () were synthesized and structurally characterized. Magnetic susceptibility and magnetization data indicate the occurrence of dominant intramolecular ferromagnetic interactions between the spin centers. Particular emphasis is given to the theoretical description of the magnetic behavior, taking into account the Ln-Ni and Ni-Ni coupling paths and the magnetic anisotropy of the Ln and Ni ions. The study is distinguished for its discussion of two distinct models, whereby model relies on the uniaxial Stevens term describing the lanthanide anisotropy and model is based on point-charge model calculations. Importantly, the physical meaning of the obtained parameters for both models was critically scrutinized.
在分子纳米团簇领域,立方烷以及缺陷双立方烷或蝶形结构是四核金属核结构的典型例子。在本工作中,一种卤化阴离子席夫碱配体(L)被加以利用,因为它易于在团簇核内以不同的结合构型与3d和4f金属离子螯合(HL = 4-氯-2-(2-羟基-3-甲氧基亚苄基氨基)苯酚)。去质子化配体的酚氧原子可在金属离子的分子内组装中以μ-O和μ-O桥连结合模式起作用。基于此,合成了两种四核同构化合物[NiTb(L)(NO)(DMF)]·2CHCN()和[NiEr(L)(NO)(DMF)]·0.5CHCN()并对其进行了结构表征。磁化率和磁化数据表明自旋中心之间存在主要的分子内铁磁相互作用。特别强调了对磁行为的理论描述,同时考虑了Ln-Ni和Ni-Ni耦合路径以及Ln和Ni离子的磁各向异性。该研究因其对两种不同模型的讨论而独具特色,其中模型依赖于描述镧系元素各向异性的单轴史蒂文斯项,而模型基于点电荷模型计算。重要的是,对两种模型所得参数的物理意义进行了严格审查。