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有限尺寸石墨烯纳米带的模拟力学性能。

Simulated mechanical properties of finite-size graphene nanoribbons.

作者信息

Aparicio E, Tangarife E, Munoz F, Gonzalez R I, Valencia F J, Careglio C, Bringa E M

机构信息

CONICET and Universidad de Mendoza, Mendoza, 5500, Argentina.

Centro de Nanotecnología Aplicada, Facultad de Ciencias, Universidad Mayor, Santiago 8580745, Chile.

出版信息

Nanotechnology. 2021 Jan 22;32(4):045709. doi: 10.1088/1361-6528/abc036.

Abstract

There are many simulation studies of mechanical properties of graphene nanoribbons (GNR), but there is a lack of agreement regarding elastic and plastic behavior. In this paper we aim to analyze mechanical properties of finite-size GNR, including elastic modulus and fracture, as a function of ribbon size. We present classical molecular dynamics simulations for three different empirical potentials which are often used for graphene simulations: AIREBO, REBO-scr and REAXFF. Ribbons with and without H-passivation at the borders are considered, and the effects of strain rate and different boundaries are also explored. We focus on zig-zag GNR, but also include some armchair GNR examples. Results are strongly dependent on the empirical potential employed. Elastic modulus under uniaxial tension can depend on ribbon size, unlike predictions from continuum-scale models and from some atomistic simulations, and fracture strain and progress vary significantly amongst the simulated potentials. Because of that, we have also carried out quasi-static ab-initio simulations for a selected size, and find that the fracture process is not sudden, instead the wave function changes from Blöch states to a strong interaction between localized waves, which decreases continuously with distance. All potentials show good agreement with DFT in the linear elastic regime, but only the REBO-scr potential shows reasonable agreement with DFT both in the nonlinear elastic and fracture regimes. This would allow more reliable simulations of GNRs and GNR-based nanostructures, to help interpreting experimental results and for future technological applications.

摘要

关于石墨烯纳米带(GNR)力学性能的模拟研究有很多,但在弹性和塑性行为方面缺乏一致性。在本文中,我们旨在分析有限尺寸GNR的力学性能,包括弹性模量和断裂情况,作为带尺寸的函数。我们给出了针对三种常用于石墨烯模拟的不同经验势的经典分子动力学模拟:AIREBO、REBO-scr和REAXFF。考虑了边界处有和没有氢钝化的纳米带,还探讨了应变率和不同边界的影响。我们主要关注锯齿形GNR,但也包括一些扶手椅形GNR的例子。结果强烈依赖于所采用的经验势。与连续尺度模型和一些原子模拟的预测不同,单轴拉伸下的弹性模量可能取决于纳米带尺寸,并且在模拟的势之间,断裂应变和过程有显著差异。因此,我们还对选定尺寸进行了准静态从头算模拟,发现断裂过程不是突然发生的,相反,波函数从布洛赫态转变为局域波之间的强相互作用,这种相互作用随距离不断减小。所有势在线弹性范围内与密度泛函理论(DFT)都有很好的一致性,但只有REBO-scr势在非线性弹性和断裂范围内与DFT有合理的一致性。这将允许对GNR和基于GNR的纳米结构进行更可靠的模拟,以帮助解释实验结果并用于未来的技术应用。

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