论文标题
抗铁磁Crcl的物理蒸气运输生长$ _3 $薄片降低到单层厚度
Physical Vapor Transport Growth of Antiferromagnetic CrCl$_3$ Flakes Down to Monolayer Thickness
论文作者
论文摘要
范德华磁铁CRX $ _3 $(x = i,br和cl)具有高度可调的磁性特性,并且是开发新型的二维(2D)磁性设备(例如磁性隧道连接和旋转隧道晶体管)的有前途的候选者。先前对CRCL $ _3 $的研究主要集中在机械剥落的样品上。高质量原子薄片的控制合成对于它们的技术实施至关重要,但迄今尚未实现。在这里,我们报告了通过物理蒸气传输技术的大型CRCL $ _3 $薄片的增长到单层厚度(〜0.6 nm)。两种孤立的片面都有定义明确的面和长条纹样品,具有超过60 $μ$ m的三层部分。高分辨率传输电子显微镜研究表明,Crcl $ _3 $薄片在单斜结构中是单晶,与拉曼结果一致。 CRCL $ _3 $薄片的室温稳定性随厚度降低而降低。石墨/crcl $ _3 $/石墨隧道交界处的隧道磁力证明,很少有crcl $ _3 $具有平面内磁动率和17 K的Néel温度。我们的研究PAVES PAVES可以开发CRCL $ _3 $ _3 $ _3 $的可伸缩2D可伸缩2D Pertronic Applications。
The van der Waals magnets CrX$_3$ (X = I, Br, and Cl) exhibit highly tunable magnetic properties and are promising candidates for developing novel two-dimensional (2D) magnetic devices such as magnetic tunnel junctions and spin tunneling transistors. Previous studies of CrCl$_3$ have mainly focused on mechanically exfoliated samples. Controlled synthesis of high quality atomically thin flakes is critical for their technological implementation but has not been achieved to date. Here, we report the growth of large CrCl$_3$ flakes with well-defined facets down to monolayer thickness (~0.6 nm) via the physical vapor transport technique. Both isolated flakes with well-defined facets and long stripe samples with the trilayer portion exceeding 60 $μ$m have been obtained. High-resolution transmission electron microscopy studies show that the CrCl$_3$ flakes are single crystalline in the monoclinic structure, consistent with the Raman results. The room temperature stability of the CrCl$_3$ flakes decreases with decreasing thickness. The tunneling magnetoresistance of graphite/CrCl$_3$/graphite tunnel junctions confirms that few-layer CrCl$_3$ possesses in-plane magnetic anisotropy and Néel temperature of 17 K. Our study paves the path for developing CrCl$_3$-based scalable 2D spintronic applications.