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Interface coupling in Au-supported MoS2-WS2 heterobilayers grown by pulsed laser deposition

机译:脉冲激光沉积生长的Au负载MoS2-WS2异质双层中的界面耦合

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Van der Waals heterostructures of transition metal dichalcogenides (TMDs) are promising systems for engineering functional layered 2D materials with tailored properties. In this work, we study the growth of WS2/MoS2 and MoS2/WS2 heterobilayers by pulsed laser deposition (PLD) under ultra-high vacuum conditions. Using Au(111) as growth substrate, we investigated the heterobilayer morphology and structure at the nanoscale by in situ scanning tunneling microscopy. Our experiments show that the heterostructure growth can be controlled with high coverage and thickness sensitivity by tuning the number of laser pulses in the PLD process. Raman spectroscopy complemented our investigation, revealing the effect of the interaction with the metallic substrate on the TMD vibrational properties and a strong interlayer coupling between the MoS2 and WS2 layers. The transfer of the heterobilayers on a silica substrate via a wet etching process shows the possibility to decouple them from the native metallic substrate and confirms that the interlayer coupling is not substrate-dependent. This work highlights the potential of the PLD technique as a method to grow TMD heterostructures, opening to new perspectives in the synthesis of complex 2D layered materials.
机译:范德瓦耳斯异质结构的过渡金属dichalcogenides (tmd)是有前途的系统工程功能分层的二维材料定制的属性。脉冲激光沉积(骑士)超高真空条件。衬底,我们调查了heterobilayer在纳米尺度的形态和结构现场扫描隧道显微镜。实验表明,异质结构的增长可以控制和高覆盖率通过调优的厚度灵敏度激光脉冲在骑士的过程。光谱学补充我们的调查,揭示的相互作用的影响金属衬底TMD振动属性和一个强大的层间耦合二硫化钼和二硫化钨层之间。通过一个heterobilayers在硅衬底湿式蚀刻过程显示了可能性解耦的原生金属衬底和确认了层间耦合substrate-dependent。潜在的骑士技术的方法种植TMD异质结构,开放新视角的合成复杂的2 d层状材料。

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