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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Junction configuration-induced mechanisms govern elastic and inelastic deformations in hybrid carbon nanomaterials
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Junction configuration-induced mechanisms govern elastic and inelastic deformations in hybrid carbon nanomaterials

机译:结构型诱导机制控制杂化碳纳米材料中的弹性和非弹性变形

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摘要

Although various hybrid 3D carbon-based architectures are reported by covalently connecting low dimensional carbon allotropes, the effect of junction configuration on deformation and mechanical properties of the hybrid carbon architectures remain elusive. Here, we focus on Pillared Graphene Nanostructure (PGN) as a model system with symmetric and asymmetric junctions to explore its diverse elastic and inelastic properties via first-principles and molecular dynamics simulations. By introducing heptagonal and octagonal rings in the junctions, our findings demonstrate that in contrast to the stacked of graphene sheets, which exhibit weak out-of-plane properties, both junction types impart a cooperative two-regime deformation mechanism that provides a number of superior characteristics in PGN, including 3D balance of strength and toughness as well as an outstanding similar to 42% out-of-plane ductility preceding the failure. Furthermore, asymmetric junctions impose wrinkles in the PGN sheets, which add extra in-plane flexibility and shear compliance, result in a nearly zeroegative in-plane Poisson's ratio in PGN, and cause the octagonal rings to act as hotspot for initiating of fracture. Our results provide the first atomistic "lens" on fundamental understanding of junction-induced deformation mechanisms in pillared graphene and can potentially provide a new phase space to better control and design mechano-mutable hybrid carbon nanostructures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:尽管通过共价连接低维碳同素异形体报道了各种基于混合3D碳的结构,但结构型对混合碳结构的变形和机械性能的影响仍然难以捉摸。在这里,我们将柱状石墨烯纳米结构(PGN)作为具有对称和不对称结的模型系统,以通过第一原理和分子动力学模拟探索其多样化的弹性和非弹性性质。通过在连接处引入七边形和八边形环,我们的发现表明,与堆叠的石墨烯片表现出较弱的面外特性相比,两种接合点类型均具有协同的两态变形机制,从而提供了许多优越的性能。 PGN的特性,包括强度和韧性的3D平衡,以及在失效之前具有出色的类似于42%的平面外延展性。此外,不对称的接合处在PGN薄板中产生皱纹,从而增加了额外的平面内柔韧性和剪切顺应性,导致PGN中的平面泊松比几乎为零/负,并使八角形环成为引发断裂的热点。 。我们的结果提供了第一个原子学上的“透镜”,可对柱状石墨烯中的结诱导形变机理有基本的了解,并有可能提供一个新的相空间,以更好地控制和设计机械可变杂化碳纳米结构。 (C)2015 Elsevier Ltd.保留所有权利。

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