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Enhanced Photoluminescence of Solution-Exfoliated Transition Metal Dichalcogenides by Laser Etching

机译:通过激光蚀刻增强了溶液剥离的过渡金属二硫属元素化物的光致发光

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摘要

Using a conventional Raman experimental apparatus, we demonstrate that the photoluminescent (PL) yield from ultrasonication-exfoliated transition metal dichalcogenides (TMDs) (MoS_(2) and WS_(2)) can be increased by up to 8-fold by means of a laser etching procedure. This laser etching process allows us to controllably pattern and reduce the number of layers of the solution-exfoliated material, overcoming the key drawback to solvent-based exfoliation of two-dimensional (2D) semiconducting materials for applications in optoelectronics. The successful laser thinning of the exfoliated 2D crystals was investigated systematically by changes in both Raman and PL spectra. A simple proof-of-principle of the scalability of this laser etching technique for solution-exfoliated TMD crystals was also demonstrated. As well as being applicable for individual materials, it is also possible to use this simple laser etching technique to investigate the structure of solution-generated van der Waals heterostructures, consisting of layers of both MoS_(2) and WS_(2).
机译:使用常规的拉曼实验设备,我们证明了超声剥落的过渡金属二卤化金属(TMDs)(MoS_(2)和WS_(2))的光致发光(PL)产量可以通过以下方式提高多达8倍:激光蚀刻程序。这种激光蚀刻工艺使我们能够可控地图案化并减少溶液剥离材料的层数,从而克服了光电技术中二维(2D)半导体材料基于溶剂剥离的主要缺点。通过拉曼光谱和PL光谱的变化,系统地研究了剥落的2D晶体的成功激光减薄。还展示了这种激光蚀刻技术对溶液剥离的TMD晶体的可扩展性的简单原理证明。除了适用于单个材料外,还可以使用这种简单的激光蚀刻技术来研究由溶液生成的范德华异质结构的结构,该结构由MoS_(2)和WS_(2)组成。

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