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Dynamical observations on the crack tip zone and stress corrosion of two-dimensional MoS2

机译:二维MoS2裂纹尖端区及应力腐蚀的动力学观察

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摘要

Whether and how fracture mechanics needs to be modified for small length scales and in systems of reduced dimensionality remains an open debate. Here, employing in situ transmission electron microscopy, atomic structures and dislocation dynamics in the crack tip zone of a propagating crack in two-dimensional (2D) monolayer MoS2 membrane are observed, and atom-to-atom displacement mapping is obtained. The electron beam is used to initiate the crack; during in situ observation of crack propagation the electron beam effect is minimized. The observed high-frequency emission of dislocations is beyond previous understanding of the fracture of brittle MoS2. Strain analysis reveals dislocation emission to be closely associated with the crack propagation path in nanoscale. The critical crack tip plastic zone size of nearly perfect 2D MoS2 is between 2 and 5 nm, although it can grow to 10 nm under corrosive conditions such as ultraviolet light exposure, showing enhanced dislocation activity via defect generation.
机译:对于小尺寸和尺寸减小的系统,是否需要以及如何修改断裂力学仍然是一个公开辩论。在这里,使用原位透射电子显微镜,观察了二维(2D)单层MoS2膜中正在扩展的裂纹的裂纹尖端区域的原子结构和位错动力学,并获得了原子到原子的位移映射。电子束用于引发裂纹。在现场观察裂纹扩展时,电子束效应最小。观察到的位错的高频发射超出了脆性MoS2断裂的先前理解。应变分析表明,位错发射与纳米尺度的裂纹扩展路径密切相关。接近完美的2D MoS2的临界裂纹尖端塑性区大小在2至5 nm之间,尽管它在诸如紫外线暴露等腐蚀条件下会增长到10 nm,通过缺陷产生表现出增强的位错活性。

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