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首页> 外文期刊>ACS applied materials & interfaces >Facile Preparation of Cu/Ag Core/Shell Electrospun Nanofibers as Highly Stable and Flexible Transparent Conductive Electrodes for Optoelectronic Devices
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Facile Preparation of Cu/Ag Core/Shell Electrospun Nanofibers as Highly Stable and Flexible Transparent Conductive Electrodes for Optoelectronic Devices

机译:Cu / Ag核/壳体纺纳米纤维作为光电器件的高稳定透明导电电极的化妆品

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Novel transparent conductive electrodes (TCEs) with copper (Cu)/silver (Ag) core/shell nanofibers (NFs) containing random, aligned, and crossed structures were prepared using a combination of electrospinning (ES) and chemical reduction. The ES process was used to prepare continuous copper nanofibers (Cu-NFs), which were used as core materials and were then immersed in silver ink (Ag ink) to form a protective layer of Ag to protect the Cu-NFs from oxidation. The Ag shell layer protected the Cu-NFs against oxidation and enhanced their conductivity. Such Cu/Ag core/shell webs can be easily transferred on the flexible matrix and can be applied in TCEs. The metal NF webs of different structures exhibited various degrees of conductivity and followed the order random type > crossed type > aligned type; however, the order with respect to transmittance (T) was inverse. The aligned nanowire networks exhibited a high T of over 80%, and the random ones exhibited a low sheet resistance of less than 10(2) Omega/sq (the best value is 7.85 Omega/sq). The present study demonstrated that TCEs based on Cu/Ag core/shell NF webs have considerable flexibility, transparency, and conductivity and can be applied in novel flexible light-emitting diode devices and solar cells in the future.
机译:使用静电纺丝(ES)的组合和化学还原制备含有随机,对齐和交叉结构的铜(Cu)/银(Ag)核/壳纳面纤维(NFS)的新型透明导电电极(TCE)。 ES工艺用于制备连续的铜纳米纤维(Cu-NFS),其用作核材料,然后浸入银油墨(Ag油墨)中以形成Ag的保护层以保护Cu-NFS免受氧化。 Ag壳层保护Cu-NFS抵抗氧化并提高了它们的电导率。这种Cu / Ag核/壳纤维网可以容易地在柔性矩阵上传输,并且可以以TCES应用。不同结构的金属NF纤维网显示出各种电导率,然后随后随机型>交叉型>对准型;然而,关于透射率(T)的顺序是逆的。对齐的纳米线网络表现出超过80%的高,随机呈现低于10(2)Ω/平方(最佳值为7.85ω/ Sq)的低薄层电阻。本研究证明,基于Cu / Ag核/壳NF纤维网的TCE具有相当大的灵活性,透明度和电导率,并且可以在未来应用于新颖的柔性发光二极管器件和太阳能电池。

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