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Significantly Improved Stability of PDMS- Packaged Silver Nanowire Film under Multiple Environments

机译:在多种环境下,PDMS封装的银纳米线薄膜的稳定性显着提高

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Silver Nanowire (AgNW) transparent conductive film has been widely studied in recent years as alternative to ITO. In spite of the excellent light transmittance, conductivity and flexibility, the weak stability of AgNW film is a severe barrier to its application in electronic devices. However, transparent electrode is packaged when applied in electronic devices. In this work, the effects of package on the stability of AgNW film under multiple environments are tested. We demonstrate that the stability of AgNW film is significantly improved after packaged by PDMS in ambient atmosphere. After annealing at 180 °C for 50 h, the sheet resistance of PDMS-packaged AgNW film increased by 47%, compared to 1100% of pure AgNW film. In harsh environment of high humidity and high temperature, PDMS-packaged AgNW film also performs outstanding stability. When exposed to ultraviolet (UV) irradiation, the pure AgNW film lost conductivity in 40 min, accompanied with the sharp decrease of light transmittance. By contrast, the sheet resistance of PDMS-packaged AgNW film only changed about 20% with nearly unchanged light transmittance. Even at high current density of 250 mA cm-2, the PDMS-packaged AgNW film exhibited a lifetime 5.8 times that of pure AgNW film. The protective effect of package will promote the application of AgNW film in optoelectronic devices.
机译:近年来,已经广泛研究了银纳米线(AgNW)透明导电膜作为ITO的替代材料。尽管AgNW薄膜具有出色的透光率,导电性和柔韧性,但其较弱的稳定性仍然严重阻碍了其在电子设备中的应用。然而,透明电极在应用于电子设备时被封装。在这项工作中,测试了包装在多种环境下对AgNW薄膜稳定性的影响。我们证明,PDMS在环境大气中包装后,AgNW薄膜的稳定性得到了显着改善。在180°C退火50小时后,PDMS封装的AgNW薄膜的薄层电阻比纯AgNW薄膜的1100%增大了47%。在高湿度和高温的恶劣环境中,PDMS包装的AgNW薄膜也具有出色的稳定性。当暴露于紫外线(UV)照射下时,纯的AgNW薄膜在40分钟内失去了导电性,并且透光率急剧下降。相比之下,PDMS封装的AgNW薄膜的薄层电阻仅变化了约20%,而透光率却几乎保持不变。即使在250 mA cm的高电流密度下 -2 ,PDMS封装的AgNW薄膜的寿命是纯AgNW薄膜的5.8倍。包装的保护作用将促进AgNW膜在光电器件中的应用。

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