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Unveiling the Structure of MoSx Nanocrystals Produced upon Laser Fragmentation of MoS2 Platelets

机译:揭露MoS2血小板激光碎裂后产生的MoSx纳米晶体的结构

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Transition-metal dichalcogenide MoS2 nanostructures have attracted tremendous attention due to their unique properties, which render them efficient nanoscale functional components for multiple applications ranging from sensors and biomedical probes to energy conversion and storage devices. However, despite the wide application range, the possibility to tune their size, shape, and composition is still a challenge. At the same time, the correlation of the structure with the optoelectronic properties is still unresolved. Here, we propose a new method to synthesize various morphologies of molybdenum sulfide nanocrystals, on the basis of ultrashort-pulsed laser fragmentation of MoS2 platelets. Depending on the irradiation conditions, multiple MoSx morphologies in the form of nanoribbons, nanospheres, and photoluminescent quantum dots are obtained. Besides the detailed structural analysis of the various crystals formed, the structure–property relation is investigated and discussed.
机译:过渡金属二卤化钼MoS2纳米结构因其独特的性能而备受关注,这使其成为高效的纳米级功能组件,可用于从传感器和生物医学探针到能量转换和存储设备的多种应用。但是,尽管应用范围很广,但调整其尺寸,形状和组成的可能性仍然是一个挑战。同时,结构与光电特性之间的相关性仍未解决。在这里,我们提出了一种新的方法来合成硫化钼纳米晶体的各种形态,基于MoS2血小板的超短脉冲激光碎裂。根据辐照条件,可以获得纳米带,纳米球和光致发光量子点形式的多种MoSx形态。除了对形成的各种晶体进行详细的结构分析外,还研究和讨论了结构与性质之间的关系。

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