氢边钝化手性石墨烯纳米带的力学性能

Yanbiao Chu, T. Ragab, P. Gautreau, C. Basaran
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引用次数: 22

摘要

摘要采用分子动力学方法模拟了无氢钝化和无氢钝化手性石墨烯纳米带(GNR)的单轴张力,研究其力学性能。结果表明,氢饱和通常会削弱手性gnr,但其对扶手椅gnr的影响几乎可以忽略不计。gnr的力学性能与手性角有关。手性角为0°的锯齿形gnr最强,而手性角为30°的扶手形gnr较弱。其他手性gnr的力学性能从这两种不同的情况逐渐演变,从30°手性角到0°手性角,失效应力和失效应变的最小值发生在20°手性角附近。在宽度尺寸效应方面,无论边缘氢钝化与否,宽gnr的破坏应变和破坏应力均较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical Properties of Hydrogen Edge–Passivated Chiral Graphene Nanoribbons
AbstractUniaxial tension of chiral graphene nanoribbons (GNR) with and without edge hydrogen passivation are simulated using molecular dynamics (MD) simulations to study their mechanical properties. The results demonstrate that hydrogen saturation generally weakens chiral GNRs, although its influence on armchair GNRs is almost negligible. Mechanical properties of GNRs depend on chiral angles. Zigzag GNRs (chiral angle 0°) are always the strongest, whereas armchair GNRs (chiral angle 30°) are weaker. The mechanical properties of other chiral GNRs evolve gradually from these two distinct cases from chiral angles of 30° to 0°, with the smallest value of failure stress and failure strain happening around a chiral angle of 20°. As for the width size effect, wider GNRs always have lower failure strains and failure stress regardless of having edge hydrogen passivation or not.
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