Relaxation properties of graphene nanoribbons at different ambient temperatures: a molecular dynamics study

材料科学 分子动力学 石墨烯 石墨烯纳米带 放松(心理学) 凝聚态物理 平面的 表面能 动能 化学物理 纳米技术 复合材料 计算化学 物理 化学 经典力学 社会心理学 计算机图形学(图像) 计算机科学 心理学
作者
Weidong Wang,Yue Hao,Xiang Ji,Yi Cheng-Long,Niu Xiang-Yu
出处
期刊:Chinese Physics [Science Press]
卷期号:61 (20): 200207-200207 被引量:12
标识
DOI:10.7498/aps.61.200207
摘要

At different thermodynamic temperatures (between 0.01 and 4000 K), the relaxation properties of three kinds of graphene nanoribbons with different aspect ratios are simulated by molecular dynamics method based on Tersoff-Brenner and AIREBO potential functions separately. Then we compare the energy curves and surface morphologies of nanoribbon relaxation with two kinds of potential functions, and study the dynamic equilibrium process of the graphene nanoribbons during their relaxation simulation. The simulation results show that the single layer graphene nanoribbon is not of a perfect planar structure and that a certain degree of fluctuations and folds occur at the edges and inside of nanoribbons, which are consistent with the existing experimental results; the surface fluctuation level of graphene nanoribbons decreases with the reduction of the aspect ratio, and the system kinetic energy has a dramatic influence on the relaxation deformation of the graphene nanoribbons at different temperatures, which indicates that the higher the system temperature, the greater the deformation is. Curl phenomenon could appear even on the surface of the nanoribbon with a high aspect ratio at a certain temperature. Finally, the simulations of graphen molecular dynamics by using the Tersoff-Brenner and AIREBO potential are deeply analyzed.
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