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Modified silver nanowire transparent electrodes with exceptional stability against oxidation

机译:具有卓越的抗氧化稳定性的改性银纳米线透明电极

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We report an easy method to prepare thin, flexible and transparent electrodes that show enhanced inertness toward oxidation using modified silver nanowires (Ag NWs). Stabilization is achieved through the adsorption of triphenylphosphine (PPh3) onto the Ag NW hybrid dispersions prior to their 2D organization as transparent electrodes on polyethylene terephtalate (PET) films. After 110 days in air (20 degrees C) under atmospheric conditions, the transmittance of the PET/Ag NW/PPh3 based films is nearly unchanged, while the transmittance of the PET/Ag NW-based films decreases by about 5%. The sheet resistance increases for both materials as time elapses, but the rate of increase is more than four times slower for films stabilized by PPh3. The improved transmittance and conductivity results in a significantly enhanced stability for the figure of merit sdc/sop. This phenomenon is highlighted in highly oxidative nitric acid vapor. The tested stabilized films in such conditions exhibit a decrease to sdc/sop of only 38% after 75 min, whereas conventional materials exhibit a relative loss of 71%. In addition, by contrast to other classes of stabilizers, such as polymer or graphene-based encapsulants, PPh3 does not alter the transparency or conductivity of the modified films. While the present films are made by membrane filtration, the stabilization method could be implemented directly in other liquid processes, including industrially scalable ones.
机译:我们报告了一种简单的方法来制备薄的,柔性的和透明的电极,这些电极使用改性的银纳米线(Ag NWs)对氧化显示出增强的惰性。通过将三苯基膦(PPh3)吸附到Ag NW杂化分散体上,使其在二维结构中作为聚对苯二甲酸乙二醇酯(PET)薄膜上的透明电极,达到稳定。在大气条件下在空气中(20摄氏度)放置110天后,基于PET / Ag NW / PPh3的薄膜的透射率几乎不变,而基于PET / Ag NW的薄膜的透射率降低约5%。随着时间的流逝,这两种材料的薄层电阻都会增加,但是对于用PPh3稳定的薄膜,其增加速度要慢四倍以上。改进的透射率和电导率可显着提高品质因数sdc / sop的稳定性。这种现象在高氧化性硝酸蒸气中更为明显。在这种条件下,经过测试的稳定膜在75分钟后的sdc / sop降低仅为38%,而常规材料的相对损耗则为71%。此外,与其他类别的稳定剂(例如聚合物或石墨烯基密封剂)相比,PPh3不会改变改性薄膜的透明度或导电性。尽管本发明的膜是通过膜过滤制得的,但稳定化方法可以直接在其他液体工艺中实施,包括工业上可扩展的工艺。

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