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Chemically modified graphene films with tunable negative Poisson’s ratios

机译:化学改性石墨烯薄膜其泊松比可调

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摘要

Graphene-derived macroscopic assemblies feature hierarchical nano- and microstructures that provide numerous routes for surface and interfacial functionalization achieving unconventional material properties. We report that the microstructural hierarchy of pristine chemically modified graphene films, featuring wrinkles, delamination of close-packed laminates, their ordered and disordered stacks, renders remarkable negative Poisson’s ratios ranging from −0.25 to −0.55. The mechanism proposed is validated by the experimental characterization and theoretical analysis. Based on the understanding of microstructural origins, pre-strech is applied to endow chemically modified graphene films with controlled negative Poisson’s ratios. Modulating the wavy textures of the inter-connected network of close-packed laminates in the chemically modified graphene films also yields finely-tuned negative Poisson’s ratios. These findings offer the key insights into rational design of films constructed from two-dimensional materials with negative Poisson’s ratios and mechanomutable performance.
机译:石墨烯衍生的宏观组件具有分级的纳米和微观结构,可为表面和界面功能化提供多种途径,从而实现非常规的材料性能。我们报告说,原始化学修饰的石墨烯薄膜的微观结构层次具有褶皱,紧密堆积的层压板分层,它们的有序和无序堆叠,使泊松比显着下降,范围为-0.25至-0.55。通过实验表征和理论分析验证了所提出的机制。基于对微观结构起源的理解,预拉伸技术被用于赋予化学修饰的石墨烯薄膜,该薄膜具有受控的负泊松比。在化学改性的石墨烯薄膜中调制紧密堆积的层压板相互连接的网络的波浪纹理,也可以产生微调的负泊松比。这些发现提供了对由具有负泊松比和机械可变性能的二维材料制成的薄膜进行合理设计的关键见解。

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