单层
各向异性
过渡金属
磁各向异性
凝聚态物理
材料科学
磁化
联轴节(管道)
磁铁
铁磁性
纳米技术
化学
磁场
物理
光学
复合材料
量子力学
生物化学
催化作用
作者
Wei‐Yan Cong,Zheng Tang,Xuan Zhao,Junhao Chu
摘要
Abstract Single magnetic atoms absorbed on an atomically thin layer represent the ultimate limit of bit miniaturization for data storage. To approach the limit, a critical step is to find an appropriate material system with high chemical stability and large magnetic anisotropic energy. Here, on the basis of first-principles calculations and the spin-orbit coupling theory, it is elucidated that the transition-metal Mn and Fe atoms absorbed on disulfur vacancies of MoS 2 monolayers are very promising candidates. It is analysed that these absorption systems are of not only high chemical stabilities but also much enhanced magnetic anisotropies and particularly the easy magnetization axis is changed from the in-plane one for Mn to the out-of-plane one for Fe by a symmetry-lowering Jahn-Teller distortion. The results point out a promising direction to achieve the ultimate goal of single adatomic magnets with utilizing the defective atomically thin layers.
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