Serri Michele, Cucinotta Giuseppe, Poggini Lorenzo, Serrano Giulia, Sainctavit Philippe, Strychalska-Nowak Judyta, Politano Antonio, Bonaccorso Francesco, Caneschi Andrea, Cava Robert J, Sessoli Roberta, Ottaviano Luca, Klimczuk Tomasz, Pellegrini Vittorio, Mannini Matteo
Istituto Italiano di Tecnologia-Graphene Labs, via Morego 30, Genova, 16163, Italy.
Chemistry Department "U. Schiff" and INSTM RU, Università degli studi di Firenze, Via della Lastruccia 3-13, Sesto Fiorentino, 50019, Italy.
Adv Mater. 2020 Jun;32(24):e2000566. doi: 10.1002/adma.202000566. Epub 2020 May 10.
Magnetic crystals formed by 2D layers interacting by weak van der Waals forces are currently a hot research topic. When these crystals are thinned to nanometric size, they can manifest strikingly different magnetic behavior compared to the bulk form. This can be the result of, for example, quantum electronic confinement effects, the presence of defects, or pinning of the crystallographic structure in metastable phases induced by the exfoliation process. In this work, an investigation of the magnetism of micromechanically cleaved CrCl flakes with thickness >10 nm is performed. These flakes are characterized by superconducting quantum interference device magnetometry, surface-sensitive X-ray magnetic circular dichroism, and spatially resolved magnetic force microscopy. The results highlight an enhancement of the CrCl antiferromagnetic interlayer interaction that appears to be independent of the flake size when the thickness is tens of nanometers. The estimated exchange field is 9 kOe, representing an increase of ≈900% compared to the one of the bulk crystals. This effect can be attributed to the pinning of the high-temperature monoclinic structure, as recently suggested by polarized Raman spectroscopy investigations in thin (8-35 nm) CrCl flakes.
由二维层通过弱范德华力相互作用形成的磁性晶体目前是一个热门的研究课题。当这些晶体被减薄到纳米尺寸时,与块状形式相比,它们可以表现出截然不同的磁性行为。这可能是例如量子电子限制效应、缺陷的存在或由剥离过程诱导的亚稳相中的晶体结构钉扎的结果。在这项工作中,对厚度大于10nm的微机械劈裂CrCl薄片的磁性进行了研究。这些薄片通过超导量子干涉仪磁力测量、表面敏感的X射线磁圆二色性和空间分辨磁力显微镜进行表征。结果突出了CrCl反铁磁层间相互作用的增强,当厚度为几十纳米时,这种增强似乎与薄片尺寸无关。估计的交换场为9kOe,与块状晶体相比增加了约900%。这种效应可归因于高温单斜结构的钉扎,正如最近在薄(8-35nm)CrCl薄片中的偏振拉曼光谱研究所表明的那样。