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首页> 外文期刊>ACS nano >Interlocking Friction Governs the Mechanical Fracture of Bilayer MoS2
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Interlocking Friction Governs the Mechanical Fracture of Bilayer MoS2

机译:互锁摩擦控制双层MOS2的机械骨折

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摘要

A molybdenum disulfide (MoS2) layered system is a two-dimensional (2D) material, which is expected to provide the next generation of electronic devices together with graphene and other 2D materials. Due to its significance for future electronics applications, gaining a deep insight into the fundamental mechanisms upon MoS2 fracture is crucial to prevent mechanical failure toward reliable applications. Here, we report direct experimental observation and atomic modeling of the complex failure behaviors of bilayer MoS2 originating from highly variable interlayer frictions, elucidated with in situ transmission electron microscopy and large-scale reactive molecular dynamics simulations. Our results provide a systematic understanding of the effects that different stacking and loading conditions have on the failure mechanisms and crack-tip behaviors in the bilayer MoS2 systems. Our findings unveil essential properties in fracture of this 2D material and provide mechanistic insight into its mechanical failure.
机译:二硫化钼(MOS2)层状系统是二维(2D)材料,预期将下一代电子器件与石墨烯和其他2D材料一起提供。由于其对未来电子应用的重要性,对MOS2骨折的基本机制深入了解,对防止机械故障对可靠的应用来说至关重要。这里,我们报告了源自高度可变的层间摩擦的双层MOS2复杂失效行为的直接实验观察和原子建模,阐明了原位透射电子显微镜和大规模反应分子动力学模拟。我们的结果提供了对不同堆叠和装载条件对Bilayer MOS2系统中的失效机构和裂纹尖端行为的影响的系统理解。我们的研究结果揭示了这款2D材料的骨折中的基本性质,并提供了机械洞察力的机械故障。

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