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基于分子动力学对PHOTH-石墨烯的力学稳定性、弹性性质及断裂行为的见解

Molecular Dynamics Insights into Mechanical Stability, Elastic Properties, and Fracture Behavior of PHOTH-Graphene.

作者信息

Peng Qing, Chen Gen, Huang Zeyu, Chen Xue, Li Ao, Cai Xintian, Zhang Yuqiang, Chen Xiao-Jia, Hu Zhongwei

机构信息

School of Science, Harbin Institute of Technology, Shenzhen 518055, China.

State Key Laboratory of Nonlinear Mechanics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Materials (Basel). 2024 Sep 27;17(19):4740. doi: 10.3390/ma17194740.

Abstract

PHOTH-graphene is a newly predicted 2D carbon material with a low-energy structure. However, its mechanical stability and fracture properties are still elusive. The mechanical stability, elastic, and fracture properties of PHOTH-graphene were investigated using classical molecular dynamics (MD) simulations equipped with REBO potential in this study. The influence of orientation and temperature on mechanical properties was evaluated. Specifically, the Young's modulus, toughness, and ultimate stress and strain varied by -26.14%, 36.46%, 29.04%, and 25.12%, respectively, when comparing the armchair direction to the zigzag direction. The percentage reduction in ultimate stress, ultimate strain, and toughness of the material in both directions after a temperature increase of 1000 K (from 200 K to 1200 K) ranged from 56.69% to 91.80%, and the Young's modulus was reduced by 13.63% and 7.25% in both directions, respectively, with Young's modulus showing lower sensitivity. Defects usually weaken the material's strength, but adding random point defects in the range of 3% to 5% significantly increases the ultimate strain of the material. Furthermore, hydrogen atom adsorption induces crack expansion to occur earlier, and the crack tip without hydrogen atom adsorption just began to expand when the strain was 0.135, while the crack tip with hydrogen atom adsorption had already undergone significant expansion. This study provides a reference for the possible future practical application of PHOTH-graphene in terms of mechanical properties and fracture failure.

摘要

PHOTH石墨烯是一种新预测的具有低能量结构的二维碳材料。然而,其机械稳定性和断裂性能仍不清楚。本研究使用配备REBO势的经典分子动力学(MD)模拟研究了PHOTH石墨烯的机械稳定性、弹性和断裂性能。评估了取向和温度对力学性能的影响。具体而言,将扶手椅方向与锯齿方向相比时,杨氏模量、韧性、极限应力和应变分别变化了-26.14%、36.46%、29.04%和25.12%。在温度从200K升高到1200K后,材料在两个方向上的极限应力、极限应变和韧性的降低百分比范围为56.69%至91.80%,杨氏模量在两个方向上分别降低了13.63%和7.25%,杨氏模量显示出较低的敏感性。缺陷通常会削弱材料的强度,但添加3%至5%范围内的随机点缺陷会显著增加材料的极限应变。此外,氢原子吸附会导致裂纹扩展提前发生,未吸附氢原子的裂纹尖端在应变达到0.135时才开始扩展,而吸附了氢原子的裂纹尖端已经发生了显著扩展。本研究为PHOTH石墨烯未来在机械性能和断裂失效方面的可能实际应用提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1877/11477849/ba86bb6c049d/materials-17-04740-g001.jpg

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