首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Magnetic anisotropy in Ni~(II)-Y~(III) binuclear complexes: On the importance of both the first coordination sphere of the Ni~(II) ion and the Y~(III) ion belonging to the second coordination sphere
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Magnetic anisotropy in Ni~(II)-Y~(III) binuclear complexes: On the importance of both the first coordination sphere of the Ni~(II) ion and the Y~(III) ion belonging to the second coordination sphere

机译:Ni〜(II)-Y〜(III)双核配合物中的磁各向异性:论Ni〜(II)离子的第一配位球和属于第二配位球的Y〜(III)离子的重要性

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摘要

The synthesis of a new Ni~(II)-Y~(III) binuclear complex with a marked elongation axis in the first coordination sphere of the Ni ~(II) ion is presented. Its zero-field splitting (ZFS) is studied by means of magnetic data and state-of-the-art ab initio calculations. A good agreement between the experimental and theoretical ZFS parameter values is encountered, validating the whole approach. The magnetic anisotropy axes are extracted from the ab initio calculations, showing that the elongation axis around the Ni~(II) ion corresponds to the hard axis of magnetization and that the sign of the axial D parameter is imposed by this axis. The Ni-Y axis is found to be an easy axis of magnetization, which is, however, not significant according to the sign of D. The already reported [(H_2O)Ni(ovan) _2(μ-NO_3)Y(ovan)(NO_3)]?H_2O (ovan = o-vanillin) complex is then revisited. In this case, the elongation axis in the Ni~(II) coordination sphere is less marked and the ZFS is dominated by the effect of the Y~(III) ion belonging to the second coordination sphere. As a consequence, the D parameter is negative and the low-temperature behavior is dominated by the Ni-Y easy axis of magnetization. A competition between the first coordination sphere of the Ni~(II) ion and the electrostatic effect of the Y~(III) ion belonging to the second coordination sphere is then evidenced in both complexes, and the positive and negative D parameters are then linked to the relative importance of both effects in each complex.
机译:提出了一种新的Ni〜(II)-Y〜(III)双核配合物的合成方法,该配合物在Ni〜(II)离子的第一配位区内具有明显的延伸轴。它的零场分裂(ZFS)通过磁数据和最新的从头算算得到了研究。 ZFS实验值与理论值之间达成了很好的一致性,从而验证了整个方法。从头算计算得出了磁各向异性轴,表明围绕Ni〜(II)离子的伸长轴与磁化的硬轴相对应,并且轴向D参数的符号由该轴施加。发现Ni-Y轴是容易磁化的轴,但是根据D的符号,它并不重要。已经报道的[(H_2O)Ni(ovan)_2(μ-NO_3)Y(ovan) (NO_3)]?H_2O(ovan = o-香兰素)复合物。在这种情况下,Ni〜(II)配位球中的伸长轴标记较少,ZFS受属于第二配位球的Y〜(III)离子的影响所支配。结果,D参数为负,并且低温行为由易磁化的Ni-Y轴主导。然后在两种配合物中都证明了Ni〜(II)离子的第一配位球与属于第二配位球的Y〜(III)离子的静电作用之间的竞争,然后将正负D参数关联起来两种作用在每个复合物中的相对重要性。

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