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内禀应变对磷烯纳米管结构稳定性和力学性能的影响。

Effects of intrinsic strain on the structural stability and mechanical properties of phosphorene nanotubes.

作者信息

Liao Xiangbiao, Hao Feng, Xiao Hang, Chen Xi

机构信息

Department of Earth and Environmental Engineering, Columbia University, New York, NY 10027, USA.

出版信息

Nanotechnology. 2016 May 27;27(21):215701. doi: 10.1088/0957-4484/27/21/215701. Epub 2016 Apr 15.

Abstract

Using molecular dynamics simulations, we explore the structural stability and mechanical integrity of phosphorene nanotubes (PNTs), where the intrinsic strain in the tubular PNT structure plays an important role. It is proposed that the atomic structure of larger-diameter armchair PNTs (armPNTs) can remain stable at a higher temperature, but the high intrinsic strain in the hoop direction renders zigzag PNTs less favorable. The mechanical properties of PNTs, including Young's modulus and fracture strength, are sensitive to the diameter, showing a size-dependence. A simple model is proposed to express Young's modulus as a function of the intrinsic axial strain, which in turn depends on the diameter of the PNTs. In addition, the compressive buckling of armPNTs is length-dependent, and instability modes transitioning from column buckling to shell buckling are observed as the ratio of the diameter/length increases.

摘要

通过分子动力学模拟,我们研究了磷烯纳米管(PNTs)的结构稳定性和机械完整性,其中管状PNT结构中的固有应变起着重要作用。研究表明,较大直径扶手椅型PNTs(armPNTs)的原子结构在较高温度下仍可保持稳定,但箍向的高固有应变使锯齿形PNTs不太有利。PNTs的力学性能,包括杨氏模量和断裂强度,对直径敏感,呈现出尺寸依赖性。提出了一个简单模型来将杨氏模量表示为固有轴向应变的函数,而固有轴向应变又取决于PNTs的直径。此外,armPNTs的压缩屈曲与长度有关,并且随着直径/长度比的增加,观察到从柱屈曲到壳屈曲的失稳模式转变。

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