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如何构建具有大磁各向异性的分子。

How to build molecules with large magnetic anisotropy.

作者信息

Cirera Jordi, Ruiz Eliseo, Alvarez Santiago, Neese Frank, Kortus Jens

机构信息

Departament de Química Inorgànica and Institut de Recerca de Química Teòrica i Computacional, Universitat de Barcelona, Diagonal 647, Barcelona, Spain.

出版信息

Chemistry. 2009;15(16):4078-87. doi: 10.1002/chem.200801608.

Abstract

Predicting single-molecule magnets? Magnetic anisotropy, a property that plays a key role in single-molecule magnets (SMMs), has been analyzed by using theoretical methods. Mononuclear complexes and the dependence of the magnetic anisotropy on their geometrical and electronic structure, as well as how such mononuclear complexes must be combined as building blocks to obtain polynuclear complexes with large anisotropy (see figure) are considered.The magnetic anisotropy of mononuclear transition-metal complexes has been studied by means of electronic structure calculations based on density functional theory. The variation of the zero-field splitting (ZFS) parameters has been analyzed for the following characteristic distortions: a tetragonal Jahn-Teller distortion, the Bailar twist, the Berry pseudorotation, and the planarization of tetrahedral complexes. Finally, the coupling of mononuclear building blocks in polynuclear complexes to obtain a large negative magnetic anisotropy necessary to improve their single-molecule-magnet (SMM) behavior has been studied.

摘要

预测单分子磁体?磁各向异性是单分子磁体(SMMs)中起关键作用的一种性质,已通过理论方法进行了分析。考虑了单核配合物及其磁各向异性对几何和电子结构的依赖性,以及如何将此类单核配合物作为构建单元组合起来以获得具有大各向异性的多核配合物(见图)。基于密度泛函理论,通过电子结构计算研究了单核过渡金属配合物的磁各向异性。针对以下特征畸变分析了零场分裂(ZFS)参数的变化:四方 Jahn-Teller 畸变、Bailar 扭转、Berry 赝旋转以及四面体配合物的平面化。最后,研究了多核配合物中单核构建单元的耦合,以获得改善其单分子磁体(SMM)行为所需的大的负磁各向异性。

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