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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A ligand-field study of the ground spin-state magnetic anisotropy in a family of hexanuclear Mn(III) single-molecule magnets
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A ligand-field study of the ground spin-state magnetic anisotropy in a family of hexanuclear Mn(III) single-molecule magnets

机译:六核Mn(III)单分子磁体族的自旋态磁各向异性的配体场研究

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摘要

A ligand field analysis of two structurally related hexanuclear Mn(III) coordination complexes reveals that the observed difference in their ground spin-state anisotropy originates from the difference in projection coefficients of the single-ion anisotropy to spin states of different total spin quantum-number, S, rather than the geometrical distortions of the metal ions. Furthermore we show that the single-ion second order anisotropy induces fourth and higher order anisotropy terms to the ground spin states of the studied systems, as a consequence of spin-state mixing effects due to the comparable magnitude of the single-ion second order anisotropy and the isotropic exchange parameters.
机译:对两种结构相关的六核Mn(III)配位化合物的配体场分析表明,观察到的其基态自旋态各向异性的差异源自单离子各向异性到不同总自旋量子数的自旋态的投影系数的差异,S,而不是金属离子的几何变形。此外,我们表明,由于单离子二阶各向异性的可比量级引起的自旋态混合效应,单离子二阶各向异性会引起研究系统的基本自旋态的四阶和更高阶各向异性。和各向同性交换参数。

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