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氧缺陷对铁磁CrI单层的影响

Impact of oxygen defects on a ferromagnetic CrI monolayer.

作者信息

Sainbileg Batjargal, Batsaikhan Erdembayalag, Hayashi Michitoshi

机构信息

Center for Condensed Matter Sciences, National Taiwan University Taipei 106 Taiwan

Center of Atomic Initiative for New Materials, National Taiwan University Taipei 106 Taiwan.

出版信息

RSC Adv. 2020 Nov 23;10(69):42493-42501. doi: 10.1039/d0ra08153a. eCollection 2020 Nov 17.

Abstract

Natural oxygen defects play a vital role in the integrity, functional properties, and performance of well-known two-dimensional (2D) materials. The recently discovered chromium triiodide (CrI) monolayer is the first real 2D magnet. However, its interaction with oxygen remains an open fundamental question, an understanding of which is essential for further exploration of its application potentials. Employing the quantum first-principles calculation method, we investigated the influence of oxygen defects on the structural, electronic, and magnetic properties of the CrI monolayer at the atomic level. We considered two oxygen-defective CrI monolayers with either a single O-attached or single O-doped structure, comparing them with an un-defective pristine monolayer. The two different oxygen defects significantly affect the original architecture of the CrI monolayer, being energetically favorable and increasing the stability of the CrI monolayer. Moreover, these point defects introduce either deep band lines or middle gap states in the band structure. As a result, the bandgap of oxygen-defective monolayers is reduced by up to 58%, compared with the pristine sheet. Moreover, the magnetic property of the CrI monolayer is drastically induced by oxygen defects. Importantly, O-defective CrI monolayers possess robust exchange coupling parameters, suggesting relatively higher Curie temperature compared with the un-defective sheet. Our findings reveal that the natural oxygen defects in the CrI monolayer enrich its structural, electronic, and magnetic properties. Thus, the controlled oxidation can be an effective way to tune properties and functionalities of the CrI monolayer and other ultrathin magnetic materials.

摘要

天然氧缺陷在著名的二维(2D)材料的完整性、功能特性及性能方面起着至关重要的作用。最近发现的三碘化铬(CrI)单层是首个真正的二维磁体。然而,其与氧的相互作用仍是一个悬而未决的基本问题,了解这一点对于进一步探索其应用潜力至关重要。我们采用量子第一性原理计算方法,在原子层面研究了氧缺陷对CrI单层的结构、电子和磁性能的影响。我们考虑了具有单个O附着或单个O掺杂结构的两种氧缺陷CrI单层,并将它们与无缺陷的原始单层进行比较。这两种不同的氧缺陷显著影响了CrI单层的原始结构,在能量上更有利且提高了CrI单层的稳定性。此外,这些点缺陷在能带结构中引入了深带线或中间能隙态。结果,与原始薄片相比,氧缺陷单层的带隙降低了高达58%。此外,氧缺陷极大地诱导了CrI单层的磁性。重要的是,O缺陷的CrI单层具有强大的交换耦合参数,表明与无缺陷薄片相比具有相对更高的居里温度。我们的研究结果表明,CrI单层中的天然氧缺陷丰富了其结构、电子和磁性能。因此,可控氧化可能是调节CrI单层及其他超薄磁性材料的性能和功能的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3493/9058019/7ce59d8cb6da/d0ra08153a-f1.jpg

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