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Flexible Transparent Conductive Film Based on Random Networks of Silver Nanowires

机译:基于银纳米线随机网络的柔性透明导电膜

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摘要

We synthesized silver nanowires (AgNWs) with a mean diameter of about 120 nm and 20–70 μm in length using a polyol process. The flexible transparent conductive AgNWs films were prepared using the vacuum filtration-transferring process, in which random AgNWs networks were transferred to a polyethylene terephthalate (PET) substrate after being deposited on mixed cellulose esters (MCEs). Furthermore, the photoelectric and mechanical properties of the AgNWs films were studied. The scanning electron microscopy images show that the AgNWs randomly, uniformly distribute on the surface of the PET substrate, which indicates that the AgNWs structure was preserved well after the transfer process. The film with 81% transmittance at 550 nm and sheet resistance about 130 Ω·sq−1 can be obtained. It is sufficient to be used as a flexible transparent conductive film. However, the results of the bending test and tape test show that the adhesion of AgNWs and PET substrate is poor, because the sheet resistance of film increases during the bending test and tape test. The 0.06 W LED lamp with a series fixed on the surface of the AgNWs-PET electrode with conductive adhesive was luminous, and it was still luminous after bent.
机译:我们使用多元醇工艺合成了平均直径约为120 nm,长度为20-70μm的银纳米线(AgNWs)。使用真空过滤-转移工艺制备柔性透明导电AgNWs膜,其中将无规AgNWs网络沉积在混合纤维素酯(MCE)上后,转移到聚对苯二甲酸乙二醇酯(PET)基底上。此外,研究了AgNWs薄膜的光电性能和机械性能。扫描电子显微镜图像显示,AgNWs无规,均匀地分布在PET基材的表面上,这表明AgNWs结构在转移过程之后得到了很好的保存。可获得在550nm具有81%的透射率和约130Ω·sq -1 的薄层电阻的膜。用作柔性透明导电膜就足够了。但是,弯曲试验和胶带试验的结果表明,由于在弯曲试验和胶带试验中膜的薄层电阻增加,因此AgNW与PET基板的密合性差。用导电粘合剂将一系列固定在AgNWs-PET电极表面上的0.06 W LED灯发光,弯曲后仍发光。

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