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首页> 外文期刊>Journal of materials science >Solution synthesis of AI:ZnO-AgNWs-AI:ZnO flexible transparent conductive film
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Solution synthesis of AI:ZnO-AgNWs-AI:ZnO flexible transparent conductive film

机译:AI:ZnO-AgNWs-AI:ZnO柔性透明导电膜的溶液合成

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摘要

Flexible films based on ZnO are usually prepared by high-cost physical methods such as sputtering and atomic layer deposition. Due to the low-temperature requirement of flexible substrate, it is difficult to synthesize flexible transparent conductive films with good conductivity using a low-cost chemical method in reality. Although the sol-combustion method can realize low-temperature chemical synthesis of a transparent conductive film, its electrical resistivity is high and cannot be applied to flexible electronic equipment. Here, we present a kind of transparent conductive composite with sandwich structure of aluminum-doped zinc oxide (AZO) as skin and silver nanowires (AgNWs) as sandwich by low-cost wet chemical methods. Since the resistivity of ZnO is not as low as that of metals. The metal layer and metal nanowires can embed between two transparent conductive layers, improving the electrical conductivity effectively. At the same time, the crystal structure and surface morphology of the film have been studied, and the influence of the concentration of silver nanowires on the surface morphology and photoelectric properties of the film has also been studied. The results show that the AZO-AgNWs-AZO composites film with AgNWs concentration of 3.6 mg/L showed the optimal optical and electrical performance. And the composites film showed excellent long-term stability and bending stability. In summary, the AZO-AgNWs-AZO sandwich structure composites have a great potential to improve flexible electronics including organic light-emitting diodes, organic solar cells and wearable electronic devices.
机译:基于ZnO的柔性膜通常是通过高成本的物理方法(例如溅射和原子层沉积)制备的。由于柔性基板的低温要求,实际上难以使用低成本的化学方法来合成具有良好导电性的柔性透明导电膜。溶胶燃烧法虽然可以实现透明导电膜的低温化学合成,但是其电阻率高,无法应用于柔性电子设备。在这里,我们通过低成本湿化学方法提出了一种透明导电复合材料,该复合材料具有以铝掺杂的氧化锌(AZO)作为表层和以银纳米线(AgNWs)作为三明治结构的三明治结构。由于ZnO的电阻率不如金属的电阻率低。金属层和金属纳米线可以嵌入两个透明导电层之间,有效地提高了导电性。同时,研究了薄膜的晶体结构和表面形貌,研究了银纳米线浓度对薄膜的表面形貌和光电性能的影响。结果表明,AgNWs浓度为3.6 mg / L的AZO-AgNWs-AZO复合膜具有最佳的光电性能。并且该复合膜显示出优异的长期稳定性和弯曲稳定性。总之,AZO-AgNWs-AZO夹心结构复合材料具有巨大的潜力,可以改善包括有机发光二极管,有机太阳能电池和可穿戴电子设备在内的柔性电子产品。

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