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二维范德华材料本征铁磁性的应变工程

Strain Engineering of Intrinsic Ferromagnetism in 2D van der Waals Materials.

作者信息

Ren Hongtao, Xiang Gang

机构信息

School of Materials Science and Engineering, Liaocheng University, Hunan Road No. 1, Liaocheng 252000, China.

College of Physics, Sichuan University, Wangjiang Road No. 29, Chengdu 610064, China.

出版信息

Nanomaterials (Basel). 2023 Aug 19;13(16):2378. doi: 10.3390/nano13162378.

Abstract

Since the discovery of the low-temperature, long-range ferromagnetic order in monolayers CrGeTe and CrI, many efforts have been made to achieve a room temperature (RT) ferromagnet. The outstanding deformation ability of two-dimensional (2D) materials provides an exciting way to mediate their intrinsic ferromagnetism (FM) with strain engineering. Here, we summarize the recent progress of strain engineering of intrinsic FM in 2D van der Waals materials. First, we introduce how to explain the strain-mediated intrinsic FM on Cr-based and Fe-based 2D van der Waals materials through ab initio Density functional theory (DFT), and how to calculate magnetic anisotropy energy (MAE) and Curie temperature () from the interlayer exchange coupling J. Subsequently, we focus on numerous attempts to apply strain to 2D materials in experiments, including wrinkle-induced strain, flexible substrate bending or stretching, lattice mismatch, electrostatic force and field-cooling. Last, we emphasize that this field is still in early stages, and there are many challenges that need to be overcome. More importantly, strengthening the guideline of strain-mediated FM in 2D van der Waals materials will promote the development of spintronics and straintronics.

摘要

自从在单层CrGeTe和CrI中发现低温、长程铁磁序以来,人们为实现室温铁磁体付出了诸多努力。二维(2D)材料出色的变形能力为通过应变工程调节其本征铁磁性(FM)提供了一条令人兴奋的途径。在此,我们总结二维范德华材料中本征FM应变工程的最新进展。首先,我们介绍如何通过第一性原理密度泛函理论(DFT)来解释基于Cr和基于Fe的二维范德华材料上应变介导的本征FM,以及如何从层间交换耦合J计算磁各向异性能量(MAE)和居里温度()。随后,我们重点关注在实验中对二维材料施加应变的诸多尝试,包括皱纹诱导应变、柔性衬底弯曲或拉伸、晶格失配、静电力和场冷却。最后,我们强调该领域仍处于早期阶段,有许多挑战需要克服。更重要的是,加强二维范德华材料中应变介导FM的指导方针将推动自旋电子学和应变电子学的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1673/10459406/6ea83e8f9f92/nanomaterials-13-02378-g001.jpg

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