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基于氧 K 边的从头算 XANES 光谱对镍掺杂氧化锆中氧空位效应的理论研究。

Theoretical investigations of oxygen vacancy effects in nickel-doped zirconia from ab initio XANES spectroscopy at the oxygen K-edge.

作者信息

Douma Dick Hartmann, Poaty Lodvert Tchibota, Lamperti Alessio, Kenmoe Stéphane, Raji Abdulrafiu Tunde, Debernardi Alberto, M'Passi-Mabiala Bernard

机构信息

Groupe de Simulations Numériques en Magnétisme et Catalyse, Faculté des Sciences et Techniques, Université Marien Ngouabi, B.P. 69 Brazzaville, Congo.

IMM-CNR, Unit of Agrate Brianza, via C. Olivetti 2, 20864 Agrate Brianza (MB), Italy.

出版信息

Beilstein J Nanotechnol. 2022 Sep 15;13:975-985. doi: 10.3762/bjnano.13.85. eCollection 2022.

Abstract

In this study, we present theoretical X-ray absorption near-edge structure (XANES) spectra at the K-edge of oxygen in zirconia containing Ni dopant atoms and O vacancies at varying concentrations. Specifically, our model system consist of a supercell composed of a zirconia (ZrO) matrix containing two nickel dopants (2Ni), which substitute two Zr atoms at a finite separation. We found the 2Ni atoms to be most stable in a ferromagnetic configuration in the absence of oxygen vacancies. In this system, each Ni atom is surrounded by two shells of O with tetrahedral geometry, in a similar way as in bulk cubic zirconia. The oxygen K-edge XANES spectrum of this configuration shows a pre-edge peak, which is attributable to dipole transitions from O 1s to O 2p states that are hybridized with unoccupied Ni 3d states. The intensity of this pre-edge peak, however, reduces upon the introduction of a single vacancy in the 2Ni-doped zirconia matrix. The corresponding ground state remains ferromagnetic, while one of the nickel atoms adopts a trigonal bipyramidal geometry, and the other one remains in a tetrahedral geometry. Furthermore, the introduction of two vacancies in the 2Ni-doped zirconia results in the two Ni atoms having distorted octahedral and trigonal bipyramidal geometries and being coupled antiferromagnetically in the ground state. Additionally, the oxygen K-edge XANES spectrum shows a further decrease in the intensity of the pre-edge peak, compared to the case of a single vacancy. Thus, the changes in the intensity of the pre-edge peak evidence a major structural change in the local environment around nickel atoms and, by extension, in the zirconia matrix. This change is due to the structural disorder induced by the 2Ni dopants and the O vacancies. Furthermore, the analysis of the XANES signatures shows that the oxidation state of nickel atoms changes with the introduction of oxygen vacancies. Our study therefore shows a possibility to control the oxidation state and magnetic order in a typical diluted magnetic oxide. Such a finding may be crucial for spintronics-related applications.

摘要

在本研究中,我们展示了含有不同浓度镍掺杂原子和氧空位的氧化锆中氧K边的理论X射线吸收近边结构(XANES)光谱。具体而言,我们的模型系统由一个超胞组成,该超胞由含有两个镍掺杂原子(2Ni)的氧化锆(ZrO)基质构成,这两个镍掺杂原子在有限距离处替代了两个锆原子。我们发现,在没有氧空位的情况下,2Ni原子以铁磁构型最为稳定。在这个系统中,每个镍原子被两层呈四面体几何结构的氧原子包围,这与块状立方氧化锆中的情况类似。这种构型的氧K边XANES光谱显示出一个前缘峰,这归因于从O 1s到与未占据的Ni 3d态杂化的O 2p态的偶极跃迁。然而,在2Ni掺杂的氧化锆基质中引入单个空位后,这个前缘峰的强度降低。相应的基态仍为铁磁态,而其中一个镍原子采用三角双锥几何结构,另一个保持四面体几何结构。此外,在2Ni掺杂的氧化锆中引入两个空位会导致两个镍原子具有扭曲的八面体和三角双锥几何结构,并在基态下反铁磁耦合。此外,与单个空位的情况相比,氧K边XANES光谱显示前缘峰的强度进一步降低。因此,前缘峰强度的变化证明了镍原子周围局部环境以及进而氧化锆基质中的重大结构变化。这种变化是由2Ni掺杂剂和氧空位引起的结构无序所致。此外,对XANES特征的分析表明,镍原子的氧化态随着氧空位的引入而变化。因此,我们的研究表明在典型的稀磁氧化物中控制氧化态和磁序是有可能的。这样的发现对于自旋电子学相关应用可能至关重要。

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