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Large-area, lightweight and thick biomimetic composites with superior material properties via fast, economic, and green pathways

机译:大面积,轻量和厚实的仿生复合材料,具有通过快速,经济和绿色途径带来的卓越材料性能

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摘要

Although remarkable success has been achieved to mimic the mechanically excellent structure of nacre in laboratory-scale models, it remains difficult to foresee mainstream applications due to time-consuming sequential depositions or energy-intensive processes. Here, we introduce a surprisingly simple and rapid methodology for large-area, lightweight, and thick nacre-mimetic films and laminates with superior material properties. Nanoclay sheets with soft polymer coatings are used as ideal building blocks with intrinsic hard/soft character. They are forced to rapidly self-assemble into aligned nacre-mimetic films via paper-making, doctor-blading or simple painting, giving rise to strong and thick films with tensile modulus of 45 GPa and strength of 250 MPa, that is, partly exceeding nacre. The concepts are environmentally friendly, energy-efficient, and economic and are ready for scale-up via continuous roll-to-roll processes. Excellent gas barrier properties, optical translucency, and extraordinary shape-persistent fire-resistance are demonstrated. We foresee advanced large-scale biomimetic materials, relevant for lightweight sustainable construction and energy-efficient transportation.
机译:尽管在实验室规模的模型中模仿珍珠母的机械优异结构已取得了巨大的成功,但由于耗时的顺序沉积或高能耗的工艺,仍很难预见主流应用。在这里,我们为具有优异材料性能的大面积,轻质和厚的珍珠母质薄膜和层压板介绍了一种出乎意料的简单快速的方法。具有软聚合物涂层的纳米粘土片材被用作具有固有硬/软特性的理想构件。它们被迫通过造纸,刮刀刮涂或简单的涂漆快速自组装成对准的珍珠母膜,从而产生了拉伸模量为45 GPa,强度为250 MPa的坚固厚膜,即部分超过珍珠质。这些概念既环保,节能又经济,可以通过连续的卷对卷工艺进行放大。展示了出色的阻气性,光学透明性和非凡的形状持久性。我们预见到先进的大规模仿生材料,与轻型可持续建筑和节能运输相关。

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