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Structure and optical properties of 2D layered MoS2 crystals implemented with novel friction induced crystal growth

机译:具有新型摩擦诱导晶体生长的2D层叠MOS2晶体的结构和光学性质

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摘要

We used X-ray diffraction, and Raman and photoluminescence (PL) spectroscopies to examine the structure and optical properties of molybdenum disulfide (MoS2) crystals grown by friction at the interface between two materials. MoS2 is produced chemically from molybdenum dithiocarbamates (MoDTC) in synthetic oil under sliding friction conditions. The X-ray diffraction (XRD) patterns indicate that the structure of the MoS2 is layered with the c-axis perpendicular to the surface. The MoS2 layer was formed on stainless steel and germanium by friction at the interface between these materials and high carbon chromium bearing steel. The number of layers is estimated to be N (N > 6) from the distance between the Raman frequencies of the E12g and A1g modes. For MoS2 grown on stainless steel, exciton peak is observed in the PL spectrum at room temperature. These results show that this friction induced crystal growth method is viable for synthesizing atomic layers of MoS2 at solid surfaces.
机译:我们使用X射线衍射和拉曼和光致发光(PL)光谱来检查通过在两种材料之间的界面处产生的二硫化钼(MOS2)晶体的结构和光学性质。 MOS2在滑动摩擦条件下用合成油中的钼二硫代氨酸(MODTC)化学生产。 X射线衍射(XRD)图案表明MOS2的结构与垂直于表面的C轴层叠。通过在这些材料和高碳铬轴承钢之间的界面处,在不锈钢和锗上形成MOS2层。从E12G和A1G模式的拉曼频率之间的距离估计层数是N(n> 6)。对于在不锈钢上生长的MOS2,在室温下在PL光谱中观察Exciton峰。这些结果表明,这种摩擦诱导的晶体生长方法可行,用于在固体表面合成MOS2的原子层。

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