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自旋极化辅助的相干相界处的掺杂剂偏析

Spin Polarization-Assisted Dopant Segregation at a Coherent Phase Boundary.

作者信息

Jiang Yixiao, Li Hongping, Yao Tingting, Wang Yujia, Yin Deqiang, Chen Chunlin, Ma Xiuliang, Ye Hengqiang, Ikuhara Yuichi

机构信息

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.

Jihua Lab, Foshan 528251, China.

出版信息

ACS Nano. 2021 Dec 28;15(12):19938-19944. doi: 10.1021/acsnano.1c07449. Epub 2021 Dec 8.

Abstract

Coherent phase boundaries are widely expected as segregation-free boundaries due to their low interfacial energies and lack of trapping sites for impurities. Here, we report an equilibrium segregation of W atoms at fully coherent terraces of a FeO (111)/FeO (0001) phase boundary that was never expected previously. Through comparison of pristine and W-doped FeO/FeO phase boundaries, it is revealed that the spin polarization of O atoms at the interface plays an important role in the periodic segregation of W atoms. Unusual spin-polarized O atoms with large magnetic moments are periodically arranged in the interfacial O plane of the pristine phase boundary. After doping of W at this boundary, W atoms will selectively substitute the Fe atoms of FeO that directly bond with three spin-polarized O atoms, thereby resulting in the complete neutralization of the magnetic moments of the spin-polarized O atoms. These findings reveal that coherent phase boundaries are able to trap impurities and local spin polarization is one of the driving forces for dopant segregation, suggesting that elemental doping is an efficient way for tailoring the physical properties of boundaries in magnetic materials and devices.

摘要

由于相干相界的界面能低且缺乏杂质捕获位点,人们普遍认为它们是无偏析边界。在此,我们报道了在FeO(111)/FeO(0001)相界的完全相干台阶处W原子的平衡偏析,这在以前从未被预料到。通过对原始和W掺杂的FeO/FeO相界的比较,发现界面处O原子的自旋极化在W原子的周期性偏析中起重要作用。具有大磁矩的异常自旋极化O原子在原始相界的界面O平面中周期性排列。在该边界处掺杂W后,W原子将选择性取代与三个自旋极化O原子直接键合的FeO中的Fe原子,从而导致自旋极化O原子的磁矩完全中和。这些发现表明,相干相界能够捕获杂质,局部自旋极化是掺杂剂偏析的驱动力之一,这表明元素掺杂是调整磁性材料和器件中边界物理性质的有效方法。

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