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二维Janus FeXY(X、Y = Cl、Br和I,X ≠ Y)单层:应变下具有可调磁性能的半金属铁磁体。

Two-Dimensional Janus FeXY (X, Y = Cl, Br, and I, X ≠ Y) Monolayers: Half-Metallic Ferromagnets with Tunable Magnetic Properties under Strain.

作者信息

Li Rui, Jiang Jiawei, Shi Xiaohui, Mi Wenbo, Bai Haili

机构信息

Tianjin Key Laboratory of Low Dimensional Materials Physics and Preparation Technology, School of Science, Tianjin University, Tianjin 300354, China.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 18;13(32):38897-38905. doi: 10.1021/acsami.1c10304. Epub 2021 Aug 9.

Abstract

Two-dimensional (2D) ferromagnetic materials with high spin polarization are highly desirable for spintronic devices. 2D Janus materials exhibit novel properties due to their broken symmetry. However, the electronic structure and magnetic properties of 2D Janus magnetic materials with high spin polarization are still unclear. Inspired by the successful synthesis of a ferromagnetic FeCl monolayer and 2D Janus MoSSe and WSSe, we systematically study the electronic structure and magnetic properties of Janus FeXY (X, Y = Cl, Br, and I, X ≠ Y) monolayers. Based on the Goodenough-Kanamori-Anderson theory, the ferromagnetism stems from the superexchange interaction mediated by Fe-X/Y-Fe bonds. The band gaps of spin-up channels are large enough (>4 eV) to prevent spin flipping, which is beneficial for spintronic devices. Additionally, the sizable magnetocrystalline anisotropy energy (MAE) indicates that Janus FeXY monolayers are suitable for information storage. More importantly, the half-metallic character is still kept in Janus FeXY monolayers, and their magnetic properties are enhanced by the biaxial compressive strain. The MAE of FeClI and FeBrI increases by 1 order of magnitude, and the Curie temperature of FeXY monolayers enhances by 100%. These results provide an example of the 2D Janus half-metallic materials and enrich the 2D magnetic material library.

摘要

具有高自旋极化的二维(2D)铁磁材料对于自旋电子器件非常理想。二维Janus材料由于其对称性破缺而表现出新颖的性质。然而,具有高自旋极化的二维Janus磁性材料的电子结构和磁性仍然不清楚。受铁磁FeCl单层以及二维Janus MoSSe和WSSe成功合成的启发,我们系统地研究了Janus FeXY(X、Y = Cl、Br和I,X≠Y)单层的电子结构和磁性。基于古迪纳夫-金森-安德森理论,铁磁性源于由Fe-X/Y-Fe键介导的超交换相互作用。自旋向上通道的带隙足够大(>4 eV)以防止自旋翻转,这对自旋电子器件有利。此外,可观的磁晶各向异性能量(MAE)表明Janus FeXY单层适用于信息存储。更重要的是,Janus FeXY单层仍保持半金属特性,并且它们的磁性通过双轴压缩应变得到增强。FeClI和FeBrI的MAE增加了1个数量级,FeXY单层的居里温度提高了100%。这些结果提供了二维Janus半金属材料的一个例子,并丰富了二维磁性材料库。

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