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首页> 外文期刊>Nanoscale >Excitonic absorption and defect-related emission in three-dimensional MoS2 pyramids
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Excitonic absorption and defect-related emission in three-dimensional MoS2 pyramids

机译:激子的吸收和defect-related排放在三维二硫化钼金字塔

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MoS2 micro-pyramids have demonstrated interesting properties in the fields of photonics and non-linear optics. In this work, we show the excitonic absorption and cathodoluminescence (CL) emission of MoS2 micro-pyramids grown by chemical vapor deposition (CVD) on SiO2 substrates. The excitonic absorption was obtained at room and cryogenic temperatures by taking advantage of the cathodoluminescence emission of the SiO2 substrate. We detected the CL emission related to defect intra-gap states, localized at the pyramid edges and with an enhanced intensity at the pyramid basal vertices. The photoluminescence and absorption analysis provided the Stokes shift of both the A and B excitons in the MoS2 pyramids. This analysis provides new insights into the optical functionality of MoS2 pyramids. This method can be applied to other 3D structures within the 2D materials family.
机译:二硫化钼micro-pyramids了有趣在光子学领域和属性非线性光学。激子的吸收和阴极发光(CL)发射的二硫化钼micro-pyramids增加了化学汽相淀积(CVD)二氧化矽基板上。在房间,激子的吸收了低温下的利用阴极发光排放的二氧化矽衬底。缺陷intra-gap州,本地化的金字塔边缘和一个增强的强度金字塔基底顶点。吸收分析提供了斯托克斯位移A和B的激子的二硫化钼金字塔。这种分析提供了新的见解光学功能的二硫化钼金字塔。方法可以应用于其他3 d结构在二维材料的家庭。

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