磁性
反铁磁性
自旋电子学
基态
凝聚态物理
材料科学
矫顽力
异质结
交换偏差
铁磁性
交换互动
各向同性
化学物理
接口(物质)
纳米技术
光电子学
替代(逻辑)
磁滞
从头算量子化学方法
结晶学
作者
Wei Jiang,Zhaocong Huang,Churen Gui,Haijing Wu,Bin Lu,Mingming Tian,Qingjie Guo,Xingze Dai,Tianyu Liu,Liang He,Jun Du,Layiq Zia,Qian Chen,Wen Zhang,Ya Zhai
摘要
Magnetic two-dimensional (2D) heterostructures have garnered substantial attention due to their advantages in spintronic applications. However, obtaining a perfect interface is still challenging owing to unavoidable dislocations or a mismatch between different 2D magnets. In this work, a highly tunable magnetism has been achieved in Cr2Te3 via selective Se substitution, which is promising for overcoming the above issue. The magnetic ground state of Cr2(SexTe1−x)3 can be adjusted from canted-ferromagnetism (x = 0) to easy-axis collinear-ferromagnetism (x = 0.13), which is accompanied by a large coercivity of about 5800 Oe, and even to isotropic antiferromagnetism (x ≥ 0.25). First-principles calculations reveal that different ground states are mainly attributed to the variation of the interlayer exchange interaction J2. Thus, the Cr2(SexTe1−x)3, with controllable magnetism, is promising for constructing magnetic heterojunctions, where the magnetism on both sides of the interface can be flexibly tailored for diverse demands.
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