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A Facile Method for Preparing Transparent, Conductive, and Paper-Like Silver Nanowire Films

机译:一种制备透明,导电和类似纸的纳米银纳米线薄膜的简便方法

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Transparent, conductive, and flexible silver nanowire (AgNW) films have been fabricated by a facile two-step method. Firstly, the well-dispersed AgNW suspension is vacuum filtered using mixed esters of cellulose (MCE) membranes as filters. Then, the AgNW-MCE films are treated with acetone vapor. After the infiltration of acetone vapor, the white and porous MCE membranes change into transparent and pore-free, and AgNW-MCE films are obtained with extraordinary optical, conductive, and mechanical properties. An optimal result is obtained with transmittance of 85% at 550 nm and sheet resistance about 50 Ohm/sq. The flexibility of AgNW-MCE films is remarkable, which is comparable to that of the AgNW film on flexible polyethylene terephthalate (PET). More important, AgNW-MCE films show an excellent adhesion to the substrate, which causes a stable electrical conductivity even after scotch tape test and finger friction test. As a result of improved adhesion to the substrate, the sheet resistance of AgNW-MCE films is about 20% smaller than that of AgNW-PET films.
机译:透明,导电和柔性的银纳米线(AgNW)膜已通过简便的两步法制造。首先,使用纤维素(MCE)膜的混合酯作为过滤器对分散良好的AgNW悬浮液进行真空过滤。然后,用丙酮蒸气处理AgNW-MCE膜。丙酮蒸气渗透后,白色且多孔的MCE膜变成透明且无孔,并获得具有非凡的光学,导电和机械性能的AgNW-MCE膜。获得最佳结果,在550 nm处的透射率为85%,薄层电阻约为50 Ohm / sq。 AgNW-MCE薄膜的柔韧性非常显着,可与柔性聚对苯二甲酸乙二醇酯(PET)上的AgNW薄膜相媲美。更重要的是,AgNW-MCE膜对基材表现出出色的附着力,即使在进行透明胶带测试和手指摩擦测试后,也能保持稳定的导电性。由于改善了对基材的粘附性,AgNW-MCE薄膜的薄膜电阻比AgNW-PET薄膜的薄膜电阻小约20%。

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