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单晶和多晶单层黑磷的力学性能。

Mechanical properties of monocrystalline and polycrystalline monolayer black phosphorus.

机构信息

Faculty of Engineering, China University of Geosciences, Wuhan, Hubei 430074, People's Republic of China. Department of Physics, Research Institute for Biomimetics and Soft Matter, Fujian Provincial Key Laboratory for Soft Functional Materials Research, Xiamen University, Xiamen 361005, People's Republic of China.

出版信息

Nanotechnology. 2017 Jan 27;28(4):045702. doi: 10.1088/1361-6528/28/4/045702. Epub 2016 Dec 16.

Abstract

The mechanical properties of monocrystalline and polycrystalline monolayer black phosphorus (MBP) are systematically investigated using classic molecular dynamic simulations. For monocrystalline MBP, it is found that the shear strain rate, sample dimensions, temperature, atomic vacancies and applied statistical ensemble affect the shear behaviour. The wrinkled morphology is closely connected with the direction of the in-plane shear, dimensions of the samples, and applied ensembles. Particularly, small samples subjected to loading/unloading of the shear deformation along the armchair direction demonstrate a clear mechanical hysteresis loop. For polycrystalline MBP, the maximum shear stress as a function of the average grain size follows an inverse pseudo Hall-Petch type relationship under an isothermal-isobaric (NPT) ensemble, whereas under a canonical (NVT) ensemble, the maximum shear stress of polycrystalline MBP exhibits a 'flipped' behaviour. Furthermore, polycrystalline MBP subjected to uniaxial tension also exhibits a strongly grain size-dependent mechanical response, and it can fail by brittle intergranular and transgranular fractures because of its weaker grain boundary structures and the direction-dependent edge energy, respectively. These findings provide useful insight into the mechanical design of BP for nanoelectronic devices.

摘要

采用经典分子动力学模拟系统地研究了单晶和多晶单层黑磷(MBP)的力学性能。对于单晶 MBP,发现剪切应变速率、样品尺寸、温度、原子空位和施加的统计系综都会影响剪切行为。褶皱形态与平面剪切的方向、样品的尺寸以及施加的系综密切相关。特别是,沿扶手椅方向进行剪切变形加载/卸载的小样品会表现出明显的力学滞后环。对于多晶 MBP,在等压等温和正则(NVT)系综下,最大剪切应力与平均晶粒尺寸的关系遵循逆类哈珀-佩奇关系,而在正则系综下,多晶 MBP 的最大剪切应力表现出“翻转”行为。此外,多晶 MBP 在单向拉伸下也表现出强烈的晶粒尺寸依赖性力学响应,并且由于其较弱的晶界结构和各向异性的边缘能,它可能会发生脆性晶间和穿晶断裂。这些发现为用于纳米电子器件的 BP 的机械设计提供了有用的见解。

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