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The fabrication and tunable optical properties of 2D transition metal dichalcogenides heterostructures by adjusting the thickness of Mo/W films

机译:通过调整Mo / W膜的厚度来制备2D过渡金属二卤化二异氰酸酯异质结构及其光学性质

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摘要

Feasible strategy developed to realize the fabrication of two-dimensional (2D) transition-metal dichalcogenides (TMDCs) vertical/lateral heterostructures is highly desirable and beneficial for the construction of ultrathin and novel optoelectronic devices. In this work, we report the fabrication of diverse 2D TMDCs structures, such as MoS2 monolayer, WS2 monolayer, Mo1-xWxS2 alloy, and WS2-Mo1-xWxS2 lateral/vertical heterostructure, through one-step chemical vapor deposition (CVD) approach via adjusting stacking sequence and thickness of Mo/W films. Systematical Raman and PL characterizations have elucidated that the obtained samples are 2H phase, and possess outstanding structural and optical modulations. The possible growth mechanism of the 2D TMDC crystals with versatile structures has been discussed based on adjustable vapor pressure and interdiffusion of Mo/W atoms. Our experiments confirm the possibility of the synthesis strategy to promote the progress of different 2D-TMDC-based structures, benefiting for various optoelectronic applications.
机译:为实现二维(2D)过渡金属二卤化金属(TMDC)垂直/横向异质结构的开发而制定的可行策略是非常理想的,并且对构造超薄和新颖的光电器件非常有益。在这项工作中,我们报告通过一步化学气相沉积(CVD)方法通过以下步骤制造了各种2D TMDC结构,例如MoS2单层,WS2单层,Mo1-xWxS2合金和WS2-Mo1-xWxS2横向/垂直异质结构。调整Mo / W薄膜的堆叠顺序和厚度。系统的拉曼和PL表征已阐明,所获得的样品为2H相,并具有出色的结构和光学调制。基于可调节的蒸气压和Mo / W原子的相互扩散,讨论了具有通用结构的2D TMDC晶体的可能生长机理。我们的实验证实了合成策略促进不同的基于2D-TMDC的结构进展的可能性,从而有利于各种光电应用。

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