自旋电子学
单层
化学
凝聚态物理
过渡金属
不对称
各向异性
压电
联轴节(管道)
磁各向异性
纳米技术
应变工程
光电子学
铁磁性
磁场
相变
材料科学
磁化
物理
光学
生物化学
量子力学
冶金
催化作用
复合材料
作者
Cheng Tang,Lei Zhang,Stefano Sanvito,Aijun Du
摘要
Triferroic compounds are the ideal platform for multistate information devices but are rare in the two-dimensional (2D) form, and none of them can maintain macroscopic order at room temperature. Herein, we propose a general strategy for achieving 2D triferroicity by imposing electric polarization into a ferroelastic magnet. Accordingly, dual transition-metal dichalcogenides, for example, 1T'-CrCoS4, are demonstrated to display room-temperature triferroicity. The magnetic order of 1T'-CrCoS4 undergoes a magnetic transition during the ferroic switching, indicating robust triferroic magnetoelectric coupling. In addition, the negative out-of-plane piezoelectricity and strain-tunable magnetic anisotropy make the 1T'-CrCoS4 monolayer a strong candidate for practical applications. Following the proposed scheme, a new class of 2D room-temperature triferroic materials is introduced, providing a promising platform for advanced spintronics.
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