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首页> 外文期刊>European journal of inorganic chemistry >Rational Assembly of High-Spin Polynuclear Magnetic Complexes into Coordination Networks: the Case of a [Mn-4] Single-Molecule Magnet Building Block
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Rational Assembly of High-Spin Polynuclear Magnetic Complexes into Coordination Networks: the Case of a [Mn-4] Single-Molecule Magnet Building Block

机译:高旋转多核磁性配合物的合理组装成配位网络:[Mn-4]单分子磁体构件的情况。

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The synthesis of transition-metal high-spin complexes and of infinite coordination networks of these high-spin carriers now represents a recognized subdiscipline of coordination chemistry. This new research trend has been particularly encouraged by the discoveries that molecular and one-dimensional coordination aggregates may behave as nanomagnets, as illustrated by the so-called single-molecule magnets (SMMs) and single-chain magnets (SCMs). While the synthesis of isolated polynuclear high-spin complexes still rely mostly on serendipitous assembly with appropriate ligands, the synthesis of SCMs or extended networks of high-spin complexes demands a more designed and controlled bottom-up assembly of precursor complexes and bridging species selected for their coordination abilities. In this context, the case of a [Mn-4] SMM is unique in the literature, as one-, two-, and three-dimensional networks have been rationally designed by using this SMM unit as a building block, giving rise to original magnetic properties. This review gathers all reported systems that we know of, having the corresponding [Mn4O6] core, either in isolated complexes or in frameworks. Their structures and, when relevant, the synthetic strategy and magnetic properties are described. The demonstrated and potential outcomes, in terms of physical properties, of such coordination assemblies of high-spin complexes are then discussed. These are highlighted through examples with other building blocks, to broaden the scope of possible strategies and building blocks, and thus provide a basis for the further development of this promising area. ((c) Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008)
机译:过渡金属高自旋复合物和这些高自旋载体的无限配位网络的合成现在代表了配位化学的一个公认学科。这种新的研究趋势特别受分子和一维配位聚集体可以充当纳米磁体的发现的鼓舞,如所谓的单分子磁体(SMM)和单链磁体(SCM)所示。尽管分离的多核高自旋复合物的合成仍主要依赖于具有适当配体的偶然组装,但SCM的合成或高自旋复合物的扩展网络需要对前体复合物和选择的桥接物种进行更多设计和控制的自下而上组装他们的协调能力。在这种情况下,[Mn-4] SMM的情况在文献中是独特的,因为已经通过使用该SMM单元作为构建块对一维,二维和三维网络进行了合理设计,从而产生了原创性。磁性。这篇综述收集了我们所知的所有报告的系统,这些系统具有相应的[Mn4O6]核,可以是孤立的络合物也可以是框架。描述了它们的结构以及相关的合成策略和磁性能。然后讨论了在物理性质方面,这种高旋转复合物的协调组装体的已证明的和潜在的结果。通过带有其他构建块的示例突出显示这些内容,以扩大可能的策略和构建块的范围,从而为该有前途的领域的进一步发展提供基础。 ((c)Wiley-VCH Verlag GmbH&Co.KGaA,69451 Weinheim,Germany,2008)

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