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首页> 外文期刊>Molecular physics >Theoretical study of spin-singlet contributions to zero-field splitting of a 3d~6 ion in a trigonal ligand field and applications to Fe~(2+) in FeSiF_6 center dot 6H_2O and FeCO_3
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Theoretical study of spin-singlet contributions to zero-field splitting of a 3d~6 ion in a trigonal ligand field and applications to Fe~(2+) in FeSiF_6 center dot 6H_2O and FeCO_3

机译:自旋单峰对三角配体场中3d〜6离子零场分裂的贡献的理论研究及其对FeSiF_6中心点6H_2O和FeCO_3中Fe〜(2+)的应用

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摘要

The complete energy matrix (210 x 210) for d(6)(d(4)) configuration ions in a trigonal ligand field is constructed. The energy levels and zero-field splitting parameters in ferrous fluosilicate and ferrous carbonate are studied. The contributions of spin singlets to zero-field splitting parameters in a trigonal ligand field are investigated for the first time. The calculation results indicate that the spin-singlet contribution to second-order zero-field splitting parameter D is negligible, but the contributions to fourth-order zero-field splitting parameter a - F cannot be neglected. Moreover, it is found that the stronger the trigonal ligand field, the larger are the spin-singlet contributions to the zero-field splitting parameters.
机译:构造了三角形配体场中d(6)(d(4))构型离子的完整能量矩阵(210 x 210)。研究了氟硅酸亚铁和碳酸亚铁中的能级和零场分裂参数。首次研究了自旋单重态对三角配体场中零场分裂参数的贡献。计算结果表明,自旋单态对二阶零场分裂参数D的贡献可忽略不计,但对四阶零场分裂参数a-F的贡献不能忽略。此外,发现三角配体场越强,自旋单峰对零场分裂参数的贡献越大。

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