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Rapid dry exfoliation method for tuneable production of molybdenum disulphide quantum dots and large micron-dimension sheets

机译:快速干燥脱皮对可协调的方法生产二硫化钼的量子点和大型micron-dimension表

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摘要

Despite advances in two-dimensional (2D) transition metal dichalcogenide research owing to their outstanding physical properties, the synthesis of large micron-dimension single-layer sheets of these materials remains a challenge. Here, we present a novel and unique method to rapidly and flexibly exfoliate bulk molybdenum disulphide (MoS2) into either small nanometre-dimension quantum dots (QDs) or large micron-dimension sheets comprising predominantly single- or few-layers. The exfoliation process is conducted in dry phase, i.e., without liquid, by exploiting nanometer-amplitude MHz-order surface vibrations in the form of surface acoustic waves (SAWs). To produce the small QDs, we take advantage of the unprecedentedly large surface acceleration-on the order of 10(8) m s(-2)-to induce an iterative impaction mechanism involving successive ejection and collision of the bulk MoS2 aggregates within a miniature enclosure in order to progressively thin and break their lateral dimensions into single- and few-layer QDs. In contrast, we suppress the impaction in the zero-height enclosure limit by confining the bulk MoS2 under adhesive tape such that the shear that arises due to the travelling SAW on the substrate progressively thins the material whilst preserving their lateral dimension such that large, predominantly-monolayer, micron-sized sheets are produced with high substrate coverage up to around 80%. This fast, additive-free and dry exfoliation platform potentially presents a simple yet scalable micromechanical exfoliation method towards viable commercial production of 2D transition metal dichalcogenides.
机译:尽管先进的二维(2 d)由于过渡金属dichalcogenide研究他们的优秀的物理性质合成大micron-dimension单层这些材料仍然是一个挑战。在这里,我们提出一个新颖独特的方法快速灵活的去批量钼二硫化物(监理)到小nanometre-dimension量子点(量子点)或大micron-dimension表主要包括单或几层。在干燥阶段进行,即没有液体,通过利用nanometer-amplitude MHz-order表面振动声表面波的形式(锯)。利用空前大的表面加速度的顺序10 (8)m s(2)——诱导一个迭代的嵌入机制有关连续批量的弹射和碰撞二硫化钼聚集在一个微型圈地以逐步薄,打破他们横向维度成单个,few-layer量子点。零高度外壳限制通过封闭大部分二硫化钼胶带,剪下由于旅行看到的底物而逐渐变薄材料保留他们的横向尺寸,这样大型predominantly-monolayer微米大小的表生产高底物覆盖到80%左右。干剥落可能提供了一个平台简单而可伸缩的微机械剥离方法对2 d的可行的商业生产过渡金属dichalcogenides。

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