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Critical role of the bending stiffness of the monolayer black phosphorus in its mechanical behaviors: molecular dynamics simulation

机译:单层黑色磷弯曲刚度在其机械行为中的关键作用:分子动力学模拟

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摘要

Black phosphorus (BP) is a novel two-dimensional nanostructure with wide potential applications in such areas as nanoresonators and nanosensors. In this study, we concentrate on the role of the bending stiffness of the BP monolayer in its mechanical performances, including tension, compression, buckling and bending. Firstly, the stress-strain curve and Young's modulus of the single layer black phosphorus (SLBP) nanoribbon with different chiral structures are obtained in the tension process via the molecular dynamics (MD) simulation. Next, the loading behavior of the SLBP nanoribbon during compression is simulated via MD. It was found that the bending stiffness of the nanoribbon has an essential effect on its postbuckling behaviors, and an empirical formula is proposed which can accurately depict the postbuckling process. Eventually, the bending properties of chiral SLBP nanoribbons are explored via the MD simulation, and the modified expression of the bending stiffness can better predict its large deflection. These findings are beneficial for us to fully understand mechanical responses of BP, which hold implications in engineering new materials and devices at nanoscale.
机译:黑磷是一种新型的二维纳米结构,在纳米谐振器、纳米传感器等领域有着广泛的应用前景。在这项研究中,我们集中研究了BP单层膜的弯曲刚度在其力学性能中的作用,包括拉伸、压缩、屈曲和弯曲。首先,通过分子动力学(MD)模拟得到了不同手性结构的单层黑磷(SLBP)纳米带在拉伸过程中的应力-应变曲线和杨氏模量。其次,通过MD模拟了SLBP纳米带在压缩过程中的加载行为。发现纳米带的弯曲刚度对其后屈曲行为有重要影响,并提出了一个能够准确描述后屈曲过程的经验公式。最后,通过分子动力学模拟研究了手性SLBP纳米带的弯曲特性,修正后的弯曲刚度表达式可以更好地预测其大挠度。这些发现有助于我们全面了解BP的机械响应,这对纳米级工程新材料和设备具有重要意义。

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