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首页> 外文期刊>Advanced Functional Materials >Flexible and robust 2D arrays of silver nanowires encapsulated within freestanding layer-by-layer films
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Flexible and robust 2D arrays of silver nanowires encapsulated within freestanding layer-by-layer films

机译:封装在独立的逐层薄膜中的银纳米线的灵活而坚固的2D阵列

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摘要

Freestanding layer-by-layer (LbL) films encapsulating controlled volume fractions (phi = 2.5-22.5 %) of silver nanowires are fabricated. The silver nanowires are sandwiched between poly(allylamine hydrochloride)/poly(styrene sulfonate) (PAH/PSS) films resulting in nanocomposite structures with a general formula of (PAH/PSS)(10)PAH Ag(PAH/PSS)(10)PAH. The Young's modulus, toughness, ultimate stress, and ultimate strain are evaluated for supported and freestanding structures. Since the diameter of the nanowires (73 nm) is larger than the thickness of the LbL films (total of about 50 nm), a peculiar morphology is observed with the silver nanowires protruding from the planar LbL films. Nanowire-containing LbL films possess the ability to sustain significant elastic deformations with the ultimate strain reaching 1.8 %. The Young's modulus increases with increasing nanowire content, reaching about 6 GPa for the highest volume fraction, due to the filler reinforcement effect commonly observed in composite materials. The ultimate strengths of these composites range from 60-80 MPa and their toughness reaches 1000 kJ m(-3) at intermediate nanowire content, which is comparable to LbL films reinforced with carbon nanotubes. These robust freestanding 2D arrays of silver nanowires with peculiar optical, mechanical, and conducting properties combined with excellent micromechanical stability could serve as active elements in microscopic acoustic, pressure, and photothermal sensors.
机译:制造封装了银纳米线的受控体积分数(phi = 2.5-22.5%)的独立式逐层(LbL)膜。银纳米线夹在聚(烯丙胺盐酸盐)/聚(苯乙烯磺酸盐)(PAH / PSS)膜之间,形成具有(PAH / PSS)(10)通式的纳米复合结构PAH Ag(PAH / PSS)(10) PAH。对支撑和独立式结构的杨氏模量,韧性,极限应力和极限应变进行了评估。由于纳米线的直径(73nm)大于LbL膜的厚度(总计约50nm),因此观察到了特殊的形态,其中银纳米线从平面的LbL膜突出。含纳米线的LbL膜具有维持显着弹性变形的能力,最终应变达到1.8%。杨氏模量随着纳米线含量的增加而增加,由于复合材料中常见的填料增强作用,最高体积分数达到约6 GPa。这些复合材料的极限强度在60-80 MPa之间,在中等纳米线含量下其韧性达到1000 kJ m(-3),与碳纳米管增强的LbL膜相当。这些坚固的独立式银纳米线二维阵列具有独特的光学,机械和导电性能,并具有出色的微机械稳定性,可以用作微观声学,压力和光热传感器中的有源元件。

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