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拉伸载荷下锑烯同素异形体的纳米力学

Nanomechanics of antimonene allotropes under tensile loading.

作者信息

Akash Tanmay Sarkar, Subad Rafsan A S I, Bose Pritom, Islam Md Mahbubul

机构信息

Department of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka-1000, Bangladesh.

Department of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka-1000, Bangladesh and Department of Mechanical Engineering, University of Massachusetts Dartmouth, 285 Old Westport Road, Dartmouth, MA-02747, USA.

出版信息

Phys Chem Chem Phys. 2021 Mar 18;23(10):6241-6251. doi: 10.1039/d0cp05563h.

Abstract

Monolayer antimonene has drawn the attention of research communities due to its promising physical properties. However, the mechanical properties of antimonene have remained largely unexplored. In this work, we investigate the mechanical properties and fracture mechanisms of two stable phases of monolayer antimonene - β-antimonene (puckered structure) and α-antimonene (buckled structure) - through molecular dynamics (MD) simulations. Our simulations reveal that a stronger chiral effect results in a greater anisotropic elastic behavior in α-antimonene than in β-antimonene. We focus on crack-tip stress distribution using local volume averaged virial stress definition and derive the fracture toughness from the crack-line stress. Our calculated crack tip stress distribution ensures the applicability of linear elastic fracture mechanics (LEFM) for cracked antimonene allotropes with considerable accuracy up to a pristine structure. We evaluate the effect of temperature, strain rate, crack-length, and point-defect concentration on the strength and elastic properties. The tensile strength of antimonene degrades significantly with the increase of temperature, crack length and defect concentration. The elastic modulus is found to be less susceptible to temperature variation but is largely affected by the increase in defects. The strain rate exhibits a power law relationship between strength and fracture strain. Finally, we discuss the fracture mechanisms in the light of crack propagation and establish the relationship between the fracture mechanism and the observed anisotropic properties.

摘要

单层锑烯因其具有前景的物理性质而引起了研究界的关注。然而,锑烯的机械性能在很大程度上仍未得到探索。在这项工作中,我们通过分子动力学(MD)模拟研究了单层锑烯的两种稳定相——β - 锑烯(褶皱结构)和α - 锑烯(弯曲结构)的机械性能和断裂机制。我们的模拟表明,更强的手性效应导致α - 锑烯比β - 锑烯具有更大的各向异性弹性行为。我们使用局部体积平均维里应力定义来关注裂纹尖端应力分布,并从裂纹线应力推导出断裂韧性。我们计算得到的裂纹尖端应力分布确保了线性弹性断裂力学(LEFM)对于具有原始结构的裂纹锑烯同素异形体具有相当高的精度。我们评估了温度、应变率、裂纹长度和点缺陷浓度对强度和弹性性能的影响。锑烯的拉伸强度随着温度、裂纹长度和缺陷浓度的增加而显著降低。发现弹性模量对温度变化不太敏感,但很大程度上受缺陷增加的影响。应变率在强度和断裂应变之间呈现幂律关系。最后,我们根据裂纹扩展讨论了断裂机制,并建立了断裂机制与观察到的各向异性性能之间的关系。

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