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首页> 外文期刊>Nanoscale >Monolayer-by-monolayer stacked pyramid-like MoS2 nanodots on monolayered MoS2 flakes with enhanced photoluminescence
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Monolayer-by-monolayer stacked pyramid-like MoS2 nanodots on monolayered MoS2 flakes with enhanced photoluminescence

机译:Monolayer-by-monolayer堆叠金字塔二硫化钼nanodots与增强单层二硫化钼片光致发光

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摘要

The precise control of the morphology and crystal shape of MoS2 nanostructures is of particular importance for their application in nanoelectronic and optoelectronic devices. Here, we describe a single step route for the synthesis of monolayer-by-monolayer stacked pyramid-like MoS2 nanodots on monolayered MoS2 flakes using a chemical vapor deposition method. First-principles calculations demonstrated that the bandgap of the pyramid-like MoS2 nanodot is a direct bandgap. Enhanced local photoluminescence emission was observed in the pyramid-like MoS2 nanodot, in comparison with monolayered MoS2 flakes. The findings presented here provide new opportunities to tailor the physical properties of MoS2 via morphology-controlled synthesis.
机译:形态和水晶的精确控制形状的二硫化钼纳米结构是特殊的他们的应用程序的重要性纳米电子和光电设备。我们描述一个步骤合成路线monolayer-by-monolayer堆叠的金字塔二硫化钼nanodots单层二硫化钼片使用化学气相沉积方法。采用基于计算表明,金字塔的能带隙二硫化钼nanodot是a直接带隙。在金字塔二硫化钼观察发射nanodot,与单层二硫化钼相比片。裁缝的物理性质的机会通过morphology-controlled合成的二硫化钼。

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