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Exceptionally Ductile and Tough Biomimetic Artificial Nacre with Gas Barrier Function

机译:具有气体阻隔功能的异常坚韧的仿生人造珍珠质

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Synthetic mimics of natural high-performance structural materials have shown great and partly unforeseen opportunities for the design of multifunctional materials. For nacre-mimetic nanocomposites, it has remained extraordinarily challenging to make ductile materials with high stretchability at high fractions of reinforcements, which is however of crucial importance for flexible barrier materials. Here, highly ductile and tough nacre-mimetic nanocomposites are presented, by implementing weak, but many hydrogen bonds in a ternary nacre-mimetic system consisting of two polymers (poly(vinyl amine) and poly(vinyl alcohol)) and natural nanoclay (montmorillonite) to provide efficient energy dissipation and slippage at high nanoclay content (50 wt%). Tailored interactions enable exceptional combinations of ductility (close to 50% strain) and toughness (up to 27.5 MJ m(-3)). Extensive stress whitening, a clear sign of high internal dynamics at high internal cohesion, can be observed during mechanical deformation, and the materials can be folded like paper into origami planes without fracture. Overall, the new levels of ductility and toughness are unprecedented in highly reinforced bioinspired nanocomposites and are of critical importance to future applications, e.g., as barrier materials needed for encapsulation and as a printing substrate for flexible organic electronics.
机译:天然高性能结构材料的合成模拟物为多功能材料的设计显示了巨大且部分无法预见的机会。对于模拟珍珠母的纳米复合材料,制造在高比例的增强材料中具有高拉伸性的可延展材料仍然异常困难,然而,这对于柔性阻隔材料至关重要。在此,通过在由两种聚合物(聚乙烯胺和聚乙烯醇)和天然纳米粘土(蒙脱土)组成的三元仿拟体系中实现弱但很多氢键,提出了高度延展性和韧性强的拟仿纳米复合材料)在高纳米粘土含量(50 wt%)下提供有效的能量耗散和打滑。量身定制的相互作用可实现延性(接近50%应变)和韧性(高达27.5 MJ m(-3))的出色组合。在机械变形过程中,可以观察到广泛的应力变白,这是在高内聚力下具有高内部动力的明显迹象,并且材料可以像纸一样折叠成折纸平面而不会破裂。总体而言,在高度增强的生物启发性纳米复合材料中,延展性和韧性的新水平是空前的,并且对于未来的应用至关重要,例如,作为封装所需的阻隔材料以及作为柔性有机电子产品的印刷基材。

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