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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Highly transparent, conducting, body-attachable metallized fibers as a flexible and stretchable film
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Highly transparent, conducting, body-attachable metallized fibers as a flexible and stretchable film

机译:高度透明,导电,身体连接的金属化纤维作为柔性且可拉伸的薄膜

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摘要

Core-shell-structured silver-electroplated nickel microfibers were fabricated via electrospinning and subsequent electroplating for applications including transparent conductive films (TCFs) and heaters. Fabrication protocol generated self-fused junctions at the intersections of overlapping micro-nanofibers. This reduced contact resistance between wires, yielding remarkably high electrical conductivity, which is highly desirable for the aforementioned applications. A very low sheet resistance of less than 0.2 Omega sq(-1) with a high transmittance of over 92% was achieved in these structures. A cactus-like morphology of silver-plated microfibers, which dramatically increases surface-to-volume (S/V) ratio and should produce electric field concentration at silver nanowire tips, was also demonstrated. This unique surface morphology could be promising for energy and environmental applications that require large interfacial areas and electric field concentration, but yielded lower transmittance than smooth wires. These cactus-like microfibers were further coated with Cu and Pt to produce hierarchically-structured multimetallic microfibers. The low-resistivity transparent silver micro-nanofiber films exhibited good heating and mechanical properties, as demonstrated in bending and stretching tests. A record high temperature of 209 degrees C was achieved with a transparent heater based on the Ag microfibers. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过静电纺丝制造核 - 壳结构的银电镀镍微纤维,并在包括透明导电膜(TCF)和加热器的应用。制造方案在重叠微纳米纤维的交叉点产生自融熔合结。这种导线之间的接触电阻降低,产生显着高的电导率,这对于上述应用是非常理想的。在这些结构中实现了具有高透射率的小于0.2ωSq(-1)的低于0.2ω的Sq(-1)的薄层电阻。还证明,镀银微纤维的纤维镀微纤维的形态显着增加了表面对体积的(S / V)比,并且应该在银纳米线尖端处产生电场浓度。这种独特的表面形态对于需要大的界面区域和电场浓度的能量和环境应用,但透射率低于光滑的线。将这些仙人掌样微纤维进一步用Cu和Pt涂覆以产生分层结构的多金属微纤维。低电阻率透明银微纳米纤维膜表现出良好的加热和机械性能,如弯曲和拉伸试验所示。通过基于Ag微纤维的透明加热器实现了209摄氏度的记录高温。 (c)2019 Elsevier B.v.保留所有权利。

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