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首页> 外文期刊>Advanced Functional Materials >A Spider-Capture-Silk-Like Fiber with Extremely High-Volume Directional Water Collection
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A Spider-Capture-Silk-Like Fiber with Extremely High-Volume Directional Water Collection

机译:具有极高批量定向水收集的蜘蛛捕获丝状纤维

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摘要

Abstract A spider web collects water by its capture silk for recovering the daytime‐distorted shape during night through water‐sensitive shape memory effect. This unique smart function and geometrical structure of spider‐capture‐silk inspires the development of artificial fibers with periodic knots for directional water collection with vast potential applications in water scarce regions. Existing such fibers are mainly based on nylon filaments coated with petroleum‐originated synthetic polymer solutions. Distinct from using synthetic materials, an all silk‐protein fiber (ASPF) with periodic knots endows extremely high volume‐to‐mass water collection capability. This fiber has a main body consisting of B. mori degummed silk coated with recombinant engineered major ampullate spidroin 2 of spider dragline silk. It is 252 times lighter than synthetic polymer coated nylon fibers that once was reported to have the highest water collection performance. The ASPF collects a maximum water volume of 6.6 µL and has a 100 times higher water collection efficiency compared to existing best water collection artificial fibers in terms of volume‐to‐mass index at the shortest length (0.8 mm) of three‐phase contact line. Since silkworm silks are available abundantly, effective use of recombinant spidroins tandemly shows great potential for scalability.
机译:摘要蜘蛛网通过其捕获丝通过它的捕获丝以通过水敏形状记忆效果在夜间恢复白天扭曲的形状。这种独特的智能功能和蜘蛛捕获丝的几何结构激发了人造纤维的开发,为定向水收集,具有巨大的水资源稀缺区域的潜在应用。现有的这种纤维主要基于涂有石油源自合成聚合物溶液的尼龙长丝。不同于使用合成材料,具有周期性结的所有丝蛋白纤维(ASPF)赋予了极高的质量浓度的水收集能力。该纤维具有由B. Mori Degummed丝绸组成的主体,涂有重组工程的主要Ampultate Spidroin 2的蜘蛛爪丝。它比合成聚合物涂覆的尼龙纤维轻252倍,据报道曾经有最高的水收集性能。 ASPF收集最大水量为6.6μL,与现有的最佳水收集人造纤维在三相接触线的最短长度(0.8 mm)的体积质量指数方面相比,水收集效率高100倍。 。由于蚕丝丝丝均为丰富,有效地使用重组蜘蛛素串联地显示出可扩展性的巨大潜力。

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