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Spontaneous rolling-up and assembly of graphene designed by using defects

机译:自发的石墨烯的卷取和装配使用设计的缺陷

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摘要

The inverse Stone-Wales defect is a typical defect in graphene, which causes local bumps and local deformation in graphene sheets. Our molecular dynamics simulations show that the spontaneous rolling up of graphene sheets can be induced by orderly distributed inverse Stone-Wales defect bumps, when defective graphene is cut into small strips. This spontaneous process is mainly dominated by the defect density and tailored graphene size. When the tailored length is longer than the upper threshold length, graphene sews up as a curly one-dimensional structure: heart-shaped nanotube. For medium length graphene (the length is in between the lower threshold value and upper threshold value), the results reveal that graphene finally curls into a completely or incompletely stitched nanotube similar to a cylindrical shell. This spontaneous process is produced by a high-frequency damped vibration accompanied by elastic and viscoelastic deformation in defective graphene. Thus, the properties of vibration are further investigated for graphene that has the tailored length shorter than the lower threshold length. This kind of graphene gradually forms a curved nanoribbon rather than a nanotube. It is also found that the bending rigidity of defective graphene is larger than that of pristine graphene.
机译:逆Stone-Wales缺陷是一个典型的缺陷在石墨烯中,导致当地的疙瘩和地方变形在石墨烯表。动力学模拟表明,自发的卷起的石墨烯可以引起的有序分布逆Stone-Wales缺陷疙瘩,当有缺陷的石墨烯是切成小条。由缺陷密度和定制石墨烯的尺寸。比上阈值长度,石墨烯缝制作为一个卷曲的一维结构:心形的纳米管。(之间的长度是在低阈值值和上阈值),结果最终揭示石墨烯卷成一个完全或不完全缝合纳米管类似于圆柱壳。过程产生的高频阻尼伴随着弹性和粘弹性振动变形在有缺陷的石墨烯。振动的性质进一步调查对石墨烯的定制长度短比低阈值的长度。石墨烯逐渐形成一个弧形nanoribbon而不是一个纳米管。有缺陷的石墨烯较大的抗弯刚度比原始的石墨烯。

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