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4f-Metal Clusters Exhibiting Slow Relaxation of Magnetization: A {Dy7} Complex with An Hourglass-like Metal Topology

机译:4F-金属簇表现出磁化缓慢的宽松:{DY7}复合物,具有沙漏状金属拓扑

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摘要

The reaction between Dy(NO3)3∙6H2O and the bulky Schiff base ligand, N-naphthalidene-2-amino-5-chlorobenzoic acid (nacbH2), in the presence of the organic base NEt3 has led to crystallization and structural, spectroscopic and magnetic characterization of a new heptanuclear [Dy7(OH)6(OMe)2(NO3)1.5(nacb)2(nacbH)6(MeOH)(H2O)2](NO3)1.5 (1) compound in ~40% yield. Complex 1 has a unique hourglass-like metal topology, among all previously reported {Dy7} clusters, comprising two distorted {Dy4(μ3-ΟΗ)3(μ3-OMe)}8+ cubanes that share a common metal vertex (Dy2). Peripheral ligation about the metal core is provided by the carboxylate groups of four η1:η1:η1:μ single-deprotonated nacbH− and two η1:η1:η2:η1:μ3 fully-deprotonated nacb2− ligands. Complex 1 is the first structurally characterized 4f-metal complex bearing the chelating/bridging ligand nacbH2 at any protonation level. Magnetic susceptibility studies revealed that 1 exhibits slow relaxation of magnetization at a zero external dc field, albeit with a small energy barrier of ~5 K for the magnetization reversal, most likely due to the very fast quantum-tunneling process. The combined results are a promising start to further explore the reactivity of nacbH2 upon all lanthanide ions and the systematic use of this chelate ligand as a route to new 4f-metal cluster compounds with beautiful structures and interesting magnetic dynamics.
机译:的Dy之间的反应(NO 3)3∙6H2O和笨重的席夫碱配体,N- naphthalidene -2-氨基-5-氯苯甲酸(nacbH2)中,在有机碱的存在下的NEt 3,导致结晶和结构,光谱和新heptanuclear的磁特性[DY7(OH)6(OME)2(NO3)1.5(NACB)2(nacbH)6(MeOH中)(H2O)2](NO 3)1.5(1)在〜40%产率的化合物。复合物1具有独特的沙漏状的金属拓扑中,所有以前报道{DY7}簇之中,包含两个扭曲{DY4(μ3-ΟΗ)3(μ3-OME)}共享公共顶点金属(DY2)8+立方烷。 η1:η1:关于金属芯外周结扎通过四个η1的羧酸酯基团提供μ单脱质子nacbH-和两个η1:η1:η2:η1:μ3完全去质子化的配体nacb2-。络合物1是第一结构表征4F-金属络合物轴承的螯合剂/在任何的质子化水平桥联配体nacbH2。磁化率研究揭示磁化的一个1所表现出慢松弛在零外部DC场,尽管具有〜5的K磁化反转一个小的能量势垒,最可能是由于在非常快的量子隧穿过程。将合并的结果是一个良好的开端,进一步探索nacbH2的要求所有镧系元素离子的反应性和系统地使用这种螯合配体的以与美丽的结构和有趣磁性动力学新4F-金属簇化合物的途径。

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