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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Investigation on nonlinear optical properties of MoS2 nanoflakes grown on silicon and quartz substrates
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Investigation on nonlinear optical properties of MoS2 nanoflakes grown on silicon and quartz substrates

机译:硅和石英基板上生长MOS2纳米薄膜非线性光学性质的研究

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摘要

In this study, MoS2 nanoflakes were directly grown on different substrates-Si/SiO2 and quartz-by one-step thermal chemical vapor deposition using MoO3 and sulfide powders as precursors. Scanning electron microscopy and x-ray diffraction patterns demonstrated the formation of MoS2 structures on both substrates. Moreover, UV-visible and photoluminescence analysis confirmed the formation of MoS2 few-layer structures. According to Raman spectroscopy, by assessment of the line width and frequency shift differences between the E-2g(1) and A(1g), it was inferred that the MoS2 grown on the silicon substrate was monolayer and that grown on the quartz substrate was multilayer. In addition, open-aperture and close-aperture Z-scan techniques were employed to study the nonlinear optical properties including nonlinear absorption and nonlinear refraction of the grown MoS2. All experiments were performed using a diode laser with a wavelength of 532 nm as the light source. It is noticeable that both samples demonstrate obvious self-defocusing behavior. The monolayer MoS2 grown on the silicon substrate displayed considerable two-photon absorption while, the multilayer MoS2 synthesized on the quartz exhibited saturable absorption. In general, few-layered MoS2 would be useful for the development of nanophotonic devices like optical limiters, optical switchers, etc.
机译:在该研究中,使用MOO3和硫化物粉末作为前体,MOS2纳米薄片直接在不同的底物-Si / SiO 2上生长在不同的基材-Si / SiO 2和四步热化学气相沉积。扫描电子显微镜和X射线衍射图案在两个基板上表明了MOS2结构的形成。此外,UV可见光和光致发光分析证实了MOS2几个层结构的形成。根据拉曼光谱,通过评估E-2G(1)和(1)和A(1G)之间的线宽和频移差异,推断出在硅衬底上生长的MOS2是单层,并且在石英底物上生长多层。此外,采用开口孔径和近距离Z扫描技术研究了包括生长MOS2的非线性吸收和非线性折射的非线性光学性能。使用波长为532nm的二极管激光作为光源进行所有实验。这两个样品都呈现出明显的自散焦行为。在硅衬底上生长的单层MOS2显示了相当大的双光子吸收,同时,在石英中合成的多层MOS2表现出可饱和的吸收。通常,少数层MOS2对于如光学限制器,光学切换器等的开发纳米光电装置也是有用的。

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