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具有等电子组分的过渡金属二元合金团簇的结构、电子和磁性质:以 MnmTcn、TimZrn 和 MnmRen 为例的研究。

Structural, electronic and magnetic properties of transition metal binary alloy clusters with isoelectronic components: case study with MnmTcn, TimZrn and MnmRen.

机构信息

Department of Condensed Matter Physics and Material Sciences, S N Bose National Centre for Basic Sciences, JD Block, Sector-III, Salt Lake City, Kolkata 700 098, India.

出版信息

J Phys Condens Matter. 2013 Jun 5;25(22):225302. doi: 10.1088/0953-8984/25/22/225302. Epub 2013 May 14.

DOI:10.1088/0953-8984/25/22/225302
PMID:23673337
Abstract

With the goal of achieving an understanding of the properties of bimetallic alloy clusters having atoms of two isoelectronic elements, we have studied the structural, electronic and magnetic properties of MnmTcn, MnmRen and TimZrn clusters with m + n = 13 (n = 0, 1, 4, 6, 9, 12, 13), using first-principles density functional calculations. MnmTcn and MnmRen represent clusters of isoelectronic series with a half-filled d shell, while TimZrn represents an isoelectronic cluster series of early transition metals. Mn-rich alloy clusters are found to prefer compact structures and isoelectronic Tc-rich or Re-rich alloy clusters are found to adopt open structures. In contrast, TimZrn clusters are all found to stabilize in compact structures, irrespective of being Ti-rich or Zr-rich. This change in behavior between two isoelectronic series is found to be driven by differences in hybridization effects, due to differences in the evolution of the relative energy positions of the d level with respect to the s and p levels upon moving from 3d to 4d or 5d elements. This effect further competes with the magnetization effect to decide the morphology of the alloy clusters. Focusing on the magnetic properties of the studied clusters, we find that the single Tc atom substituted alloy cluster exhibits markedly improved magnetic properties compared to that of pure Mn clusters.

摘要

为了深入理解具有两种等电子元素原子的双金属合金团簇的性质,我们使用第一性原理密度泛函计算方法研究了 MnmTcn、MnmRen 和 TimZrn 团簇的结构、电子和磁性性质,其中 m + n = 13(n = 0、1、4、6、9、12、13)。MnmTcn 和 MnmRen 代表具有半满 d 壳层的等电子系列团簇,而 TimZrn 代表早期过渡金属的等电子系列团簇。富 Mn 的合金团簇倾向于紧凑结构,而等电子的 Tc 富或 Re 富的合金团簇则倾向于采用开放结构。相比之下,无论 Ti 是富还是 Zr 是富,TimZrn 团簇都被发现稳定在紧凑结构中。这种两个等电子系列之间行为的变化是由杂化效应的差异驱动的,这是由于 d 能级的相对能量位置相对于 s 和 p 能级随 3d 到 4d 或 5d 元素的演变而发生变化。这种效应进一步与磁化效应竞争,以决定合金团簇的形态。关注研究团簇的磁性性质,我们发现单个 Tc 原子取代的合金团簇与纯 Mn 团簇相比表现出明显改善的磁性性质。

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