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Synthesizing a Healable Stretchable Transparent Conductor

机译:合成可愈合的可拉伸透明导体

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We report the first demonstration of a healable stretchable transparent electrode comprising a silver nanowire (AgNW) network and poly(3,4-ethylenedioxythiophene):polystyrenesulfonate (PEDOT) hybrid layer in the surface of a Diels-Alder elastomer substrate. The thin PEDOT layer solders the silver nanowires and confines the nanowire network in the substrate surface. The bonding between the nanowires and PEDOT is tuned via ethanol-water wetting, which allows for large-strain prestretching of the AgNW network. The composite electrode prepared via such a wetting and prestretching treatment has a figure-of-merit sheet resistance of 15 ohm/sq with 78% transmittance at 550 nm and can be stretched by 100% strain. Damages caused by razor blade cutting on the conductive surface could be healed, and the damaging-healing could be repeated for three times at the same location. The healed electrode exhibits similar resistance-strain response as the fresh electrode because of the PEDOT layer being capable of circumventing broken nanowire sites. Fatigue-induced damages after 100 cycles of 60% strain can also be healed by simple heating.
机译:我们报告了一种可愈合的可拉伸透明电极的首次演示,该电极在Diels-Alder弹性体基材的表面上包含银纳米线(AgNW)网络和聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT)杂化层。薄的PEDOT层焊接银纳米线,并将纳米线网络限制在基板表面。纳米线和PEDOT之间的键合通过乙醇-水润湿来调节,这允许对AgNW网络进行大应变的预拉伸。通过这样的润湿和预拉伸处理制备的复合电极的品质因数薄层电阻为15ohm / sq,在550nm下的透射率为78%,并且可以拉伸100%应变。可以修复因剃须刀片在导电表面上切割而造成的损坏,并且可以在同一位置重复进行3次损坏修复。修复后的电极表现出与新鲜电极相似的电阻应变响应,这是因为PEDOT层能够绕开断裂的纳米线部位。 100次60%应变的疲劳循环后,疲劳引起的损伤也可以通过简单加热来治愈。

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