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编织石墨烯纳米带片:一种机械坚固的结构。

Knitted graphene-nanoribbon sheet: a mechanically robust structure.

机构信息

Department of Physics, and Institute of Theoretical Physics and Astrophysics, Xiamen University, Xiamen, China.

出版信息

Nanoscale. 2012 Feb 7;4(3):785-91. doi: 10.1039/c1nr11200g. Epub 2011 Dec 15.

Abstract

In this paper, a new nanostructure is proposed, namely, the knitted graphene-nanoribbon sheet (KGS), which consists of zigzag and/or armchair graphene nanoribbons. The knitting technology is introduced to graphene nanotechnology to produce large area graphene sheets. Compared with pristine graphene, the chirality of a knitted graphene-nanoribbon sheet is much more flexible and can be designed on demand. The mechanical properties of KGSs are investigated by molecular dynamics simulations, including the effect of vacancies. With hydrogen atoms saturating the ribbon edges, the structure (KGS + H) is found to be of significant mechanical robustness, whose fracture does not rely on the critical bonds. The fracture strain of KGS + H remains nearly unchanged as long as there remains a single defect-free graphene nanoribbon in the tensile direction. This graphene nano knitting technique is experimentally feasible, inspired by a recent demonstration by Fournier et al. [Phys. Rev. B, 2011, 84, 035435] of lifting a single molecular wire using a combined frequency-modulated atomic force and tunnelling microscope.

摘要

在本文中,提出了一种新的纳米结构,即编织石墨烯纳米带片(KGS),它由锯齿形和/或扶手椅石墨烯纳米带组成。编织技术被引入到石墨烯纳米技术中,以生产大面积的石墨烯片。与原始石墨烯相比,编织石墨烯纳米带片的手性更加灵活,可以按需设计。通过分子动力学模拟研究了 KGS 的力学性能,包括空位的影响。通过饱和 ribbon 边缘的氢原子,发现结构(KGS + H)具有显著的机械鲁棒性,其断裂不依赖于临界键。只要在拉伸方向上仍然存在一个无缺陷的石墨烯纳米带,KGS + H 的断裂应变就几乎保持不变。这种石墨烯纳米编织技术是实验上可行的,灵感来自 Fournier 等人最近的一项演示[Phys. Rev. B, 2011, 84, 035435],他们使用调频原子力显微镜和隧道显微镜来提起单根分子线。

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