论文标题

MOS2单层中的周期性巨型,不均匀菌株的工程创建

Engineered creation of periodic giant, non-uniform strains in MoS2 monolayers

论文作者

Blundo, Elena, Di Giorgio, Cinzia, Pettinari, Giorgio, Yildirim, Tanju, Felici, Marco, Lu, Yuerui, Bobba, Fabrizio, Polimeni, Antonio

论文摘要

在二维晶体中的有序应变场的实现是许多方面有趣的观点,包括增强新型运输方式和实现增强的设备性能。在这项工作中,我们证明了将原子薄钼(MOS2)的微米区域进行微米的可能性,并具有所需订购的巨型菌株。可以通过机械形成的MOS2膜来获得块状薄片的质子辐照,从而导致形成含有加压氢的单层圆顶。通过通过沉积聚合物掩模和电子束光刻来预先拍摄薄片,我们表明,不仅可以控制圆顶的大小和位置,还可以创建机械约束。原子力显微镜测量结果表明,该约束明显改变了圆顶的形态,否则会受到普遍缩放定律的影响。在优化辐射和模式过程后,创建了大型应变梯度的前所未有的周期性构型(通过数值模拟估算),最高菌株接近破裂的临界值(> 10%)。拉曼实验证实了这种高应变的创造。此处提出的方法代表了迈向二维晶体应变工程的重要步骤。

The realization of ordered strain fields in two-dimensional crystals is an intriguing perspective in many respects, including the instauration of novel transport regimes and the achievement of enhanced device performances. In this work, we demonstrate the possibility to subject micrometric regions of atomically-thin molybdenum disulphide (MoS2) to giant strains with the desired ordering. Mechanically-deformed MoS2 membranes can be obtained by proton-irradiation of bulk flakes, leading to the formation of monolayer domes containing pressurized hydrogen. By pre-patterning the flakes via deposition of polymeric masks and electron beam lithography, we show that it is possible not only to control the size and position of the domes, but also to create a mechanical constraint. Atomic force microscopy measurements reveal that this constraint alters remarkably the morphology of the domes, otherwise subject to universal scaling laws. Upon the optimization of the irradiation and patterning processes, unprecedented periodic configurations of large strain gradients -- estimated by numerical simulations -- are created, with the highest strains being close to the rupture critical values (> 10 %). The creation of such high strains is confirmed by Raman experiments. The method proposed here represents an important step towards the strain engineering of two-dimensional crystals.

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