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一个 3d-4f 八核[Mn(III)(4)Ln(III)(4)]轮系(Ln = Sm、Gd、Tb、Dy、Ho、Er 和 Y)家族:合成、结构和磁性。

A family of 3d-4f octa-nuclear [Mn(III)(4)Ln(III)(4)] wheels (Ln = Sm, Gd, Tb, Dy, Ho, Er, and Y): synthesis, structure, and magnetism.

机构信息

Institut für Anorganische Chemie der Universität Karlsruhe, Karlsruhe Institute of Technology, Engesserstrasse 15, D-76131 Karlsruhe, Germany.

出版信息

Inorg Chem. 2010 Dec 20;49(24):11587-94. doi: 10.1021/ic101754g. Epub 2010 Nov 11.

Abstract

We present the syntheses, crystal structures, and magnetochemical characterizations for a family of isostructural [Mn(4)Ln(4)] compounds (Ln = Sm, Gd, Tb, Dy, Ho, Er, and Y). They were prepared from the reactions of formic acid, propionic acid, N-n-butyl-diethanolamine, manganese perchlorate, and lanthanide nitrates under the addition of triethylamine in MeOH. The compounds possess an intriguing hetero-octanuclear wheel structure with four Mn(III) and four Ln(III) ions alternatively arranged in a saddle-like ring, where formate ions act as key carboxylate bridges. In the lattice, the molecules stack into columns in a quasi-hexagonal arrangement. Direct current (dc) magnetic susceptibility measurements indicated the depopulation of the Stark components at low temperature and/or very weak antiferromagnetic interactions between magnetic centers. The zero-field alternating current (ac) susceptibility studies revealed that the compounds containing Sm, Tb, and Dy showed frequency-dependent out-of-phase signals, indicating they are single-molecule magnets (SMMs). Magnetization versus applied dc field sweeps on a single crystal of the Dy compound down to 40 mK exhibited hysteresis depending on temperatures and field sweeping rates, further confirming that the Dy compound is a SMM. The magnetization dynamics of the Sm and Y compounds investigated under dc fields revealed that the relaxation of the Sm compound is considered to be dominated by the two-phonon (Orbach) process while the Y compound displays a multiple relaxation process.

摘要

我们介绍了一组同构的[Mn(4)Ln(4)]化合物(Ln = Sm、Gd、Tb、Dy、Ho、Er 和 Y)的合成、晶体结构和磁化学特性。它们是通过甲酸、丙酸、N-正丁基-二乙醇胺、高氯酸锰和镧系硝酸盐在甲醇中添加三乙胺反应制备的。这些化合物具有有趣的异核八核轮状结构,其中四个 Mn(III)和四个 Ln(III)离子交替排列在鞍状环中,其中甲酸盐离子作为关键的羧酸盐桥。在晶格中,分子以准六方排列堆积成柱状。直流(dc)磁化率测量表明,在低温下或磁心之间存在非常弱的反铁磁相互作用时,斯塔克分量被耗尽。零场交流(ac)磁化率研究表明,含有 Sm、Tb 和 Dy 的化合物表现出与频率相关的反相信号,表明它们是单分子磁体(SMM)。对 Dy 化合物单晶在 40 mK 下进行的直流磁场磁化率测量显示出与温度和磁场扫描速率有关的滞后现象,进一步证实了 Dy 化合物是一个 SMM。在直流场下研究 Sm 和 Y 化合物的磁化动力学表明,Sm 化合物的弛豫被认为主要由双声子(Orbach)过程主导,而 Y 化合物则显示出多重弛豫过程。

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