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稀土表面合金化:GdAu2 的新相。

Rare-earth surface alloying: a new phase for GdAu2.

机构信息

DIPC and Centro de Física de Materiales (CSIC-UPV/EHU), E-20018 San Sebastián, Spain.

出版信息

Phys Rev Lett. 2010 Jul 2;105(1):016101. doi: 10.1103/PhysRevLett.105.016101.

Abstract

Surface alloying is a powerful way of varying physical and chemical properties of metals, for a number of applications from catalysis to nuclear and green technologies. Surfaces offer many degrees of freedom, giving rise to new phases that do not have a bulk counterpart. However, the atomic characterization of distinct surface compounds is a major task, which demands powerful experimental and theoretical tools. Here we illustrate the process for the case of a GdAu2 surface phase of extraordinary crystallinity. The combined use of surface-sensitive techniques and state-of-the-art ab initio calculations disentangles its atomic and electronic properties. In particular, the stacking of the surface layers allows for gadolinium's natural ferromagnetic state, at variance with the bulk phase, where frustration leads to antiferromagnetic interlayer coupling.

摘要

表面合金化是一种改变金属物理和化学性质的有效方法,在从催化到核和绿色技术的许多应用中都有应用。表面提供了许多自由度,产生了没有体相对应物的新相。然而,不同表面化合物的原子特征化是一项主要任务,这需要强大的实验和理论工具。在这里,我们以具有非凡结晶度的 GdAu2 表面相为例来说明这一过程。表面敏感技术和最先进的 ab initio 计算的结合使用,揭示了其原子和电子性质。特别是,表面层的堆叠允许钆的自然铁磁状态,与体相不同,体相中的各向异性导致反铁磁层间耦合。

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