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[Mo(CN)₇]⁴⁻阴离子及氰基桥连磁性网络片段的磁各向异性

Magnetic anisotropy of [Mo(CN)7]4- anions and fragments of cyano-bridged magnetic networks.

作者信息

Chibotaru Liviu F, Hendrickx Marc F A, Clima Sergiu, Larionova Joulia, Ceulemans Arnout

机构信息

Laboratorium voor Kwantumchemie, Katholieke Universiteit Leuven, Celestijnenlaan 200F, B-3001 Belgium.

出版信息

J Phys Chem A. 2005 Aug 18;109(32):7251-7. doi: 10.1021/jp051858j.

Abstract

Quantum chemistry calculations of CASSCF/CASPT2 level together with ligand field analysis are used for the investigation of magnetic anisotropy of [Mo(CN)7]4- complexes. We have considered three types of heptacyano environments: two ideal geometries, a pentagonal bipyramid and a capped trigonal prism, and the heptacyanomolybdate fragment of the cyano-bridged magnetic network K2[Mn(H2O)2]3[Mo(CN)7]2.6H2O. At all geometries the first excited Kramers doublet is found remarkably close to the ground one due to a small orbital energy gap in the ligand field spectrum, which ranges between a maximal value in the capped trigonal prism (800 cm(-1)) and zero in the pentagonal bipyramid. The small value of this gap explains (i) the axial form of the g tensor and (ii) the strong magnetic anisotropy even in strongly distorted complexes. Comparison with available experimental data for the g tensor of the mononuclear precursors reveals good agreement with the present calculations for the capped trigonal prismatic complex and a significant discrepancy for the pentagonal bipyramidal one. The calculations for the heptacyanomolybdate fragment of K2[Mn(H2O)2]3[Mo(CN)7]2.6H2O give g(perpendicular)/g(parallel) approximately 0.5 and the orientation of the local anisotropy axis close to the symmetry axis of an idealized pentagonal bipyramid. These findings are expected to be important for the understanding of the magnetism of anisotropic Mo(III)-Mn(II) cyano-bridged networks based on the [Mo(CN)7]4- building block.

摘要

采用CASSCF/CASPT2水平的量子化学计算方法并结合配体场分析,对[Mo(CN)7]4-配合物的磁各向异性进行研究。我们考虑了三种类型的七氰基环境:两种理想几何构型,即五角双锥和盖帽三棱柱,以及氰基桥联磁网络K2[Mn(H2O)2]3[Mo(CN)7]2·6H2O中的七氰钼酸盐片段。在所有几何构型中,由于配体场光谱中的轨道能隙较小,第一激发态克莱默斯二重态与基态非常接近,该能隙在盖帽三棱柱中的最大值为800 cm(-1),在五角双锥中为零。这个小能隙值解释了:(i) g张量的轴向形式;(ii) 即使在严重扭曲的配合物中也存在强磁各向异性。与单核前体g张量的现有实验数据比较表明,对于盖帽三棱柱配合物,目前的计算结果与实验结果吻合良好,而对于五角双锥配合物则存在显著差异。对K2[Mn(H2O)2]3[Mo(CN)7]2·6H2O的七氰钼酸盐片段的计算给出g(垂直)/g(平行)约为0.5,局部各向异性轴的取向接近理想化五角双锥的对称轴。这些发现对于理解基于[Mo(CN)7]4-结构单元的各向异性Mo(III)-Mn(II)氰基桥联网络的磁性具有重要意义。

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