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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Malonate-based copper(II) coordination compounds: ferromagnetic coupling controlled by dicarboxylates
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Malonate-based copper(II) coordination compounds: ferromagnetic coupling controlled by dicarboxylates

机译:丙二酸酯基铜(II)配位化合物:二羧酸盐控制的铁磁耦合

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摘要

Studies on structural and magnetic properties of polynuclear transition metal complexes, aimed at understanding the structural and chemical factors governing electronic exchange coupling mediated by multiatom bridging ligands, are of continuing interest to design new molecular materials exhibiting unusual magnetic, optical and electrical properties, bound to their molecular nature. Looking at potentially flexible bridging ligands, the malonate group seems a suitable candidate. The occurrence of two carboxylate groups in the 1,3 positions allows this ligand to adopt simultaneously chelating bidentate and different carboxylato bridging modes (syn-syn, anti-anti and syn-anti trough one or two carboxylate groups) In the course of our research we have structurally and magnetically characterized several carboxylato bridged copper(II) complexes. In the present study we start describing briefly the structure and the magnetic behaviour of the compounds, subsequently we analyze the magneto-structural correlations concluding that the parameter that governs, in first order, the magnetic interaction between metal centres is the relative position of the carboxylato bridge of the malonate respect to the copper(II) ions: equatorial-equatorial (strong interaction), equatorial-apical (weak interaction) and apical-apical (negligible interaction). Inside this, division another parameters become important such as beta (angle between copper(II) basal planes) in the equatorial-equatorial or the distortion t in the equatorial-apical. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 65]
机译:研究多核过渡金属配合物的结构和磁性能,旨在了解控制由多原子桥联配体介导的电子交换耦合的结构和化学因素,对于设计表现出异常磁,光和电特性的新分子材料具有持续的兴趣,它们的分子性质。考虑到潜在的柔性桥联配体,丙二酸酯基似乎是合适的候选者。在1,3位上出现两个羧酸盐基团使该配体同时采用螯合双齿和不同的羧基桥接方式(一个或两个羧酸盐基团为同-syn,反-和反-反槽)在我们的研究过程中我们已经在结构和磁性上表征了几种羧基桥接的铜(II)配合物。在本研究中,我们开始简要地描述化合物的结构和磁性行为,随后我们分析其磁-结构相关性,得出结论,即决定金属中心之间的磁相互作用的一阶参数是羧基的相对位置。丙二酸与铜(II)离子的桥梁:赤道-赤道(强相互作用),赤道-顶端(弱相互作用)和顶端-顶端(可忽略的相互作用)。在此内部,除法的另一个参数变得很重要,例如赤道赤道中的beta(铜(II)基面之间的夹角)或赤道顶中的变形t。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:65]

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