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纳米多金属氧酸盐的结构相关的受挫磁性:美学与性能的和谐统一。

Structure-related frustrated magnetism of nanosized polyoxometalates: aesthetics and properties in harmony.

机构信息

Institut für Anorganische Chemie, RWTH Aachen, D-52074 Aachen, Germany.

出版信息

Dalton Trans. 2010 Jan 7(1):21-36. doi: 10.1039/b910716a. Epub 2009 Oct 12.

Abstract

The structural versatility characterizing polyoxometalate chemistry, in combination with the option to deliberately use well-defined building blocks, serves as the foundation for the generation of a large family of magnetic clusters, frequently comprising highly symmetric spin arrays. If the spin centers are coupled by antiferromagnetic exchange, some of these systems exhibit spin frustration, which can result in novel magnetic properties of purely molecular origins. We discuss here the magnetic properties of selected nanosized polyoxometalate clusters featuring spin triangles as their magnetic 'building blocks' or fragments. This includes unique porous Keplerate clusters of the type {(Mo)Mo(5)}(12)M(30) (M = Fe(III), Cr(III), V(IV)) with the spin centers defining a regular icosidodecahedron and the {V(15)As(6)}-type cluster sphere containing a single equilateral spin triangle; these species are widely discussed and studied in the literature for their role in materials science as molecular representations of Kagomé lattices and in relation to quantum computing, respectively. Exhibiting fascinating and unique structural features, these magnetic molecules allow the study of the implications of frustrated spin ordering. Furthermore, this perspective covers the impact of spin frustration on the degeneracy of the ground state and related problems, namely strong magnetic anisotropy and the interplay of antisymmetric exchange and structural Jahn-Teller effects.

摘要

多金属氧酸盐化学的结构多功能性,结合使用明确定义的构建块的选择,为生成一大类磁性簇提供了基础,这些簇通常包含高度对称的自旋阵列。如果自旋中心通过反铁磁交换耦合,这些系统中的一些表现出自旋受挫,这可能导致具有纯分子起源的新型磁性质。我们在这里讨论了具有作为其磁“构建块”或片段的自旋三角形的选定纳米多金属氧酸盐簇的磁性质。这包括具有定义规则二十面体的自旋中心的独特多孔 Keplerate 簇{(Mo)Mo(5)}(12)M(30)(M = Fe(III),Cr(III),V(IV))和包含单个等边自旋三角形的{V(15)As(6)}-型簇球体;这些物种在文献中被广泛讨论和研究,因为它们作为 Kagomé 晶格的分子表示在材料科学中的作用以及与量子计算的关系。这些磁性分子表现出迷人而独特的结构特征,允许研究受挫自旋有序的影响。此外,这种观点涵盖了自旋受挫对基态简并性和相关问题的影响,即强各向异性磁矩和反对称交换与结构 Jahn-Teller 效应的相互作用。

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