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Ice-Templated, Large-Area Silver Nanowire Pattern for Flexible Transparent Electrode

机译:用于柔性透明电极的冰晶化,大面积银纳米线图案

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Flexible transparent electrodes are critically important for the emerging flexible and stretchable electronic and optoelectronic devices. To this end, transparent polymer films coated with silver nanowires (AgNWs) have been intensively studied in the past decade. However, it remains a grand challenge to achieve both high conductivity and transmittance in large-area films, mainly due to the poor alignment of AgNWs and their high junction resistance. Here, the successful attempt to realize large-area AgNW patterns on various substrates by a 2D ice-templating approach is reported. With a relatively low dosage of AgNWs (4 mu g center dot cm(-2)), the resulted flexible electrode simultaneously achieves high optical transmittance (approximate to 91%) and low sheet resistance (20 omega center dot sq(-1)). In addition, the electrode exhibits excellent durability during cyclic bending (approximate to 10 000 times) and stretching (50% strain). The potential applications of the flexible transparent electrode in both touch screen and electronic skin sensor, which can monitor the sliding pressure and direction in real-time, are demonstrated. More importantly, it is believed that the study represents a facile and low-cost approach to assemble various nanomaterials into large-area functional patterns for advanced flexible devices.
机译:柔性透明电极对新出现的柔性和可伸缩的电子和光电器件来说是至关重要的。为此,在过去十年中,涂有银纳米线(AgNW)的透明聚合物薄膜已经集中研究。然而,在大面积薄膜中实现高导电性和透射率仍然是一个大挑战,主要是由于Agnws的差和其高结耐抗性差。这里,报道了通过2D冰模板方法的成功尝试实现各种基板上的大面积AgNW模式。与AgNWs的相对低的剂量(4亩克中心点厘米(-2)),所得到的柔性电极同时实现高的光透射率(接近91%)和低的薄层电阻(20欧米加中心点平方(-1)) 。另外,电极在循环弯曲(近似为10 000次)和拉伸(50%菌株)期间表现出优异的耐久性。柔性透明电极在触摸屏和电子皮肤传感器中的潜在应用,可以证明可以实时监测滑动压力和方向。更重要的是,据信该研究代表了一种容易和低成本的方法,可以将各种纳米材料组装成用于先进的柔性装置的大面积功能图案。

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