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二维极限下的磁性调控:理论视角

Tuning magnetism at the two-dimensional limit: a theoretical perspective.

作者信息

Li Dongzhe, Li Shuo, Zhong Chengyong, He Junjie

机构信息

Institute for Advanced Study, Chengdu University, Chengdu 610100, P. R. China.

Bremen Center for Computational Materials Science, University of Bremen, Am Fallturm 1, 2835, Bremen, Germany.

出版信息

Nanoscale. 2021 Dec 13;13(47):19812-19827. doi: 10.1039/d1nr06835k.

Abstract

The discovery of two-dimensional (2D) magnetic materials provides an ideal testbed for manipulating the magnetic properties at the atomically thin and 2D limit. This review gives recent progress in the emergent 2D magnets and heterostructures, focusing on the theory side. We summarize different theoretical models, ranging from the atomic to micrometer-scale, used to describe magnetic orders. Then, the current strategies for tuning magnetism in 2D materials are further discussed, such as electric field, magnetic field, strain, optics, chemical functionalization, and spin-orbit engineering. Finally, we conclude with the future challenges and opportunities for 2D magnetism.

摘要

二维(2D)磁性材料的发现为在原子级薄和二维极限下操纵磁性能提供了一个理想的试验平台。本综述介绍了新兴二维磁体和异质结构的最新进展,重点在理论方面。我们总结了从原子尺度到微米尺度用于描述磁序的不同理论模型。然后,进一步讨论了当前二维材料中调控磁性的策略,如电场、磁场、应变、光学、化学功能化和自旋轨道工程。最后,我们总结了二维磁性未来面临的挑战和机遇。

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