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首页> 外文期刊>Nano letters >Quantum-Dot-Like States in Molybdenum Disulfide Nanostructures Due to the Interplay of Local Surface Wrinkling, Strain, and Dielectric Confinement
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Quantum-Dot-Like States in Molybdenum Disulfide Nanostructures Due to the Interplay of Local Surface Wrinkling, Strain, and Dielectric Confinement

机译:钼二硫化钼纳米结构中的量子点状状态由于局部表面皱纹,应变和介电限制的相互作用

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摘要

The observation of quantum light emission from atomically thin transition metal dichalcogenides has opened a new field of applications for these material systems. The corresponding excited charge-carrier localization has been linked to defects and strain, while open questions remain regarding the microscopic origin. We demonstrate that the bending rigidity of these materials leads to wrinkling of the two-dimensional layer. The resulting strain field facilitates strong carrier localization due to its pronounced influence on the band gap. Additionally, we consider charge carrier confinement due to local changes of the dielectric environment and show that both effects contribute to modified electronic states and optical properties. The interplay of surface wrinkling, strain-induced confinement, and local changes of the dielectric environment is demonstrated for the example of nanobubbles that form when monolayers are deposited on substrates or other two-dimensional materials.
机译:从原子薄过渡金属二甲基化物中观察量子光发射已经为这些材料系统打开了一种新的应用领域。 相应的激发电荷载体定位已与缺陷和菌株有关,而打开的问题仍然存在于显微阶段。 我们证明这些材料的弯曲刚度导致二维层的皱纹。 由于其对带隙的显着影响,所得到的应变场促进了强大的载体定位。 此外,我们认为由于介电环境的局部变化,我们认为收费载体限制,并表明这两种影响都有助于改进的电子状态和光学性质。 对于纳米泡的纳米泡沉积在基板或其他二维材料上时,对表面皱纹,应变诱导的限制和介电环境的局部变化的相互作用。

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