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碱金属涂层 Sc 团簇的增强磁矩:新型磁超原子。

Enhanced magnetic moments of alkali metal coated Sc clusters: new magnetic superatoms.

机构信息

Harish-Chandra Research Institute, Chhatnag Road, Jhunsi, Allahabad 211019, India.

出版信息

J Chem Phys. 2010 Mar 28;132(12):124302. doi: 10.1063/1.3367722.

Abstract

It is shown that the magnetic moments of Sc atoms can be significantly enhanced by combining them with alkali atoms. We present results of first principles electronic structure calculations of ScNa(n) (1 < or = n < or = 12) clusters that indicate that a ScNa(12) cluster consisting of a Sc atom surrounded by 12 Na atoms forming a compact icosahedral structure has a spin magnetic moment of 3 micro(B) that is three times that of an isolated Sc atom. This unusual behavior is analyzed in terms of the filling of the supershells 1S, 1P,... controlled by the nature and size of the alkali atoms and the more localized Sc 3d orbitals that hybridize weakly with Na sp orbitals. It is shown that even larger magnetic moments could be attained by controlling the relative position of 1S, 1P, and 3d states. Indeed, our studies indicate large magnetic moment five times that of an isolated Sc atom in the ScK(12) and ScCs(12) clusters, in which the 3d orbitals of Sc adopt a half-filled configuration, while the clusters are stabilized by filled 1S(2), 1P(6), and 2S(2) shells, the features making them as new magnetic superatoms.

摘要

研究表明,将钪原子与碱金属原子结合可以显著增强其磁矩。我们呈现了 ScNa(n)(1 <= n <= 12)团簇的第一性原理电子结构计算结果,表明由 12 个钠原子围绕一个钪原子形成的紧密的二十面体结构的 ScNa(12)团簇具有 3 μB 的自旋磁矩,是孤立钪原子的三倍。这种异常行为可以根据超壳 1S、1P、……的填充情况来分析,超壳的填充情况由碱金属原子的性质和大小以及与 Na sp 轨道弱混合的更局部化的 Sc 3d 轨道来控制。研究表明,通过控制 1S、1P 和 3d 态的相对位置,可以获得更大的磁矩。事实上,我们的研究表明,在 ScK(12)和 ScCs(12)团簇中,磁矩是孤立钪原子的五倍,其中 Sc 的 3d 轨道采用半满构型,而团簇则由填满的 1S(2)、1P(6)和 2S(2)壳层稳定,这些特征使它们成为新的磁超原子。

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