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Preparation of Monolayer MoS2 Quantum Dots using Temporally Shaped Femtosecond Laser Ablation of Bulk MoS2 Targets in Water

机译:飞秒激光烧蚀水中大量MoS2靶材制备单层MoS2量子点

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摘要

Zero-dimensional MoS2 quantum dots (QDs) possess distinct physical and chemical properties, which have garnered them considerable attention and facilitates their use in a broad range of applications. In this study, we prepared monolayer MoS2 QDs using temporally shaped femtosecond laser ablation of bulk MoS2 targets in water. The morphology, crystal structures, chemical, and optical properties of the MoS2 QDs were characterized by transmission electron microscopy, X-ray diffraction, Raman spectroscopy, X-ray photoelectron spectroscopy, UV–vis absorption spectra, and photoluminescence spectra. The analysis results show that highly pure, uniform, and monolayer MoS2 QDs can be successfully prepared. Moreover, by temporally shaping a conventional single pulse into a two-subpulse train, the production rate of MoS2 nanomaterials (including nanosheets, nanoparticles, and QDs) and the ratio of small size MoS2 QDs can be substantially improved. The underlying mechanism is a combination of multilevel photoexfoliation of monolayer MoS2 and water photoionization–enhanced light absorption. The as-prepared MoS2 QDs exhibit excellent electrocatalytic activity for hydrogen evolution reactions because of the abundant active edge sites, high specific surface area, and excellent electrical conductivity. Thus, this study provides a simple and green alternative strategy for the preparation of monolayer QDs of transition metal dichalcogenides or other layered materials.
机译:零维MoS2量子点(QD)具有独特的物理和化学特性,引起了人们极大的关注,并促进了它们在广泛的应用中的使用。在这项研究中,我们使用时间形状的飞秒激光消融水中的大量MoS2靶材制备了单层MoS2 QD。通过透射电子显微镜,X射线衍射,拉曼光谱,X射线光电子能谱,紫外可见吸收光谱和光致发光光谱来表征MoS2量子点的形貌,晶体结构,化学和光学性质。分析结果表明,可以成功制备高纯度,均匀且单层的MoS2 QD。此外,通过将常规的单个脉冲临时成形为两个子脉冲串,可以显着提高MoS2纳米材料(包括纳米片,纳米颗粒和QD)的生产率和小尺寸MoS2 QD的比例。潜在的机理是单层MoS2的多级光剥落和水光电离增强的光吸收的结合。如此制备的MoS2 QD由于具有丰富的活性边缘位点,高的比表面积和出色的电导率,因此对氢气析出反应具有出色的电催化活性。因此,这项研究为制备过渡金属二卤化物或其他层状材料的单层量子点提供了一种简单而绿色的替代策略。

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