Li Hui, Ruan Shuangchen, Zeng Yu-Jia
College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, P. R. China.
Center for Advanced Material Diagnostic Technology, Shenzhen Technology University, Shenzhen, 518118, P. R. China.
Adv Mater. 2019 Jul;31(27):e1900065. doi: 10.1002/adma.201900065. Epub 2019 May 8.
2D van der Waals (vdW) magnets, which present intrinsic ferromagnetic/antiferromagnetic ground states at finite temperatures down to atomic-layer thicknesses, open a new horizon in materials science and enable the potential development of new spin-related applications. The layered structure of vdW magnets facilitates their atomic-layer cleavability and magnetic anisotropy, which counteracts spin fluctuations, thereby providing an ideal platform for theoretically and experimentally exploring magnetic phase transitions in the 2D limit. With reduced dimensions, the susceptibility of 2D magnets to a large variety of external stimuli also makes them more promising than their bulk counterpart in various device applications. Here, the current status of characterization and tuning of the magnetic properties of 2D vdW magnets, particularly the atomic-layer thickness, is presented. Various state-of-the-art optical and electrical techniques have been applied to reveal the magnetic states of 2D vdW magnets. Other emerging 2D vdW magnets and future perspectives on the stacking strategy are also given; it is believed that they will excite more intensive research and provide unprecedented opportunities in the field of spintronics.
二维范德华(vdW)磁体在有限温度下直至原子层厚度都呈现出本征铁磁/反铁磁基态,为材料科学开辟了新视野,并推动了新型自旋相关应用的潜在发展。vdW磁体的层状结构有利于其原子层可剥离性和磁各向异性,这抵消了自旋涨落,从而为在二维极限下从理论和实验上探索磁相变提供了理想平台。随着尺寸减小,二维磁体对多种外部刺激的敏感性也使其在各种器件应用中比其体相磁体更具前景。在此,介绍了二维vdW磁体磁性能表征和调控的现状,特别是原子层厚度方面。已应用各种先进的光学和电学技术来揭示二维vdW磁体的磁态。还给出了其他新兴的二维vdW磁体以及堆叠策略的未来展望;相信它们将激发更深入的研究,并在自旋电子学领域提供前所未有的机遇。