铁磁性
范德瓦尔斯力
自旋电子学
居里温度
凝聚态物理
材料科学
铁磁材料性能
纳米技术
磁化
物理
磁场
量子力学
分子
作者
Hao Wu,Wenfeng Zhang,Li Yang,Jun Wang,Jie Li,Luying Li,Yihua Gao,Liang Zhang,Juan Du,Haibo Shu,Haixin Chang
标识
DOI:10.1038/s41467-021-26009-0
摘要
Abstract Control of ferromagnetism is of critical importance for a variety of proposed spintronic and topological quantum technologies. Inducing long-range ferromagnetic order in ultrathin 2D crystals will provide more functional possibility to combine their unique electronic, optical and mechanical properties to develop new multifunctional coupled applications. Recently discovered intrinsic 2D ferromagnetic crystals such as Cr 2 Ge 2 Te 6 , CrI 3 and Fe 3 GeTe 2 are intrinsically ferromagnetic only below room temperature, mostly far below room temperature (Curie temperature, ~20–207 K). Here we develop a scalable method to prepare freestanding non-van der Waals ultrathin 2D crystals down to mono- and few unit cells (UC) and report unexpected strong, intrinsic, ambient-air-robust, room-temperature ferromagnetism with T C up to ~367 K in freestanding non-van der Waals 2D CrTe crystals. Freestanding 2D CrTe crystals show comparable or better ferromagnetic properties to widely-used Fe, Co, Ni and BaFe 12 O 19 , promising as new platforms for room-temperature intrinsically-ferromagnetic 2D crystals and integrated 2D devices.
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