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Exfoliation and Raman Spectroscopic Fingerprint of Few-Layer NiPS3 Van der Waals Crystals

机译:少量NiPS3 Van der Waals晶体的剥落和拉曼光谱指纹图谱

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摘要

The range of mechanically cleavable Van der Waals crystals covers materials with diverse physical and chemical properties. However, very few of these materials exhibit magnetism or magnetic order, and thus the provision of cleavable magnetic compounds would supply invaluable building blocks for the design of heterostructures assembled from Van der Waals crystals. Here we report the first successful isolation of monolayer and few-layer samples of the compound nickel phosphorus trisulfide (NiPS3) by mechanical exfoliation. This material belongs to the class of transition metal phosphorus trisulfides (MPS3), several of which exhibit antiferromagnetic order at low temperature, and which have not been reported in the form of ultrathin sheets so far. We establish layer numbers by optical bright field microscopy and atomic force microscopy, and perform a detailed Raman spectroscopic characterization of bilayer and thicker NiPS3 flakes. Raman spectral features are strong functions of excitation wavelength and sample thickness, highlighting the important role of interlayer coupling. Furthermore, our observations provide a spectral fingerprint for distinct layer numbers, allowing us to establish a sensitive and convenient means for layer number determination.
机译:可机械裂解的范德华晶体的范围涵盖了具有多种物理和化学性质的材料。但是,这些材料中很少有表现出磁性或磁序的,因此提供可裂解的磁性化合物将为设计由范德华兹晶体组装的异质结构提供宝贵的基础。在这里,我们报告了通过机械剥离技术成功地成功分离出单层和三层复合三硫化镍磷(NiPS3)样品。该材料属于过渡金属三硫化磷(MPS3)类,其中一些在低温下表现出反铁磁有序性,迄今为止尚未以超薄片的形式报道。我们通过光学明场显微镜和原子力显微镜建立层数,并对双层和较厚的NiPS3薄片进行详细的拉曼光谱表征。拉曼光谱特征是激发波长和样品厚度的强大函数,突出了层间耦合的重要作用。此外,我们的观察结果为不同的层号提供了光谱指纹,从而使我们能够建立灵敏而方便的层号确定方法。

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