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Highly flexible transparent conductors based on 2D silver nanowire network

机译:基于2D银纳米线网络的高度灵活的透明导体

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Electronic devices that can be flexed, rolled or folded allow integration of conventionally stiff electronic devices to arbitrary surfaces, such as the curved and elastic human body and its tissues, enabling next-generation bio-electronic devices. Using randomly arranged networks of silver nanowires, ~ 50 μm long, we fabricated and characterized foldable transparent conductors. Silver nanowires are investigated as they exhibit superior electrical, optical and mechanical properties. We examine the change in the percolation network of the silver nanowire films at small bending radii. The electrical resistance is found to increase as the bending radius is decreased. Loss of contact between nanowires at the junctions and poor adhesion to the substrates contribute to an increase in electrical resistance. We propose a simple method to circumvent these problems. By applying a thin layer of conductive polymer, poly(3,4-ethylenedioxythiophene) poly(styrenesulfonate), onto the silver nanowire film, we are able to demonstrate a transparent conductor that maintains good electrical conductivity even upon bending to a very small bending radius (<; 1 mm) without deterioration of the electrical properties.
机译:可以弯曲,卷起或折叠的电子设备允许将常规坚硬的电子设备集成到任意表面,例如弯曲且有弹性的人体及其组织,从而实现了下一代生物电子设备。使用约50μm长的随机排列的银纳米线网络,我们制作并表征了可折叠透明导体。由于银纳米线表现出优异的电,光学和机械性能,因此对其进行了研究。我们研究了在较小弯曲半径下银纳米线薄膜的渗透网络的变化。发现电阻随着弯曲半径的减小而增加。纳米线之间在接合处的接触损失以及对基底的不良粘附力导致电阻的增加。我们提出了一种避免这些问题的简单方法。通过在银纳米线薄膜上涂覆一层导电聚合物,即聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐,可以证明透明导体​​即使弯曲到很小的弯曲半径也能保持良好的导电性(<; 1 mm),而不会降低电性能。

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