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Electrical conductivity enhancement of transparent silver nanowire films on temperature-sensitive flexible substrates using intense pulsed ion beam

机译:使用强脉冲离子束的温度敏感柔性基板上的透明银纳米线膜的导电性增强

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摘要

Silver nanowire (AgNW) networks have attracted particular attention as transparent conductive films (TCF) due to their high conductivity, flexibility, transparency, and large scale processing compatible synthesis. As-prepared AgNW percolating networks typically suffer from high contact resistance, requiring additional post-synthetic processing. In this report, large area irradiation with 200 ns short intense pulsed ion beam (IPIB) was used to anneal and enhance the conductivity of AgNW network, deposited on temperature-sensitive polyethylene terephthalate (PET) substrate. A TCF sheet resistance shows irradiation dose dependence, decreasing by four orders of magnitude and reaching a value of 70 Omega/sq without damaging the polymer substrate, which retained a transparency of 94%. The IPIB irradiation fused AgNW network into the PET substrate, resulting in a great adhesion enhancement. Heat transfer simulations show that the heat originates at the near-surface layer of the TCF and lasts an ultra-short period of time. Obtained experimental and simulation results indicate that the irradiation with IPIBs opens new perspectives in the low-temperature annealing of nanomaterials deposited on temperature-sensitive substrates.
机译:银纳米线(AgNW)网络作为透明导电薄膜(TCF)因其高导电性、灵活性、透明性和大规模工艺兼容的合成而受到特别关注。制备的AgNW渗滤网络通常具有高接触电阻,需要额外的合成后处理。在本报告中,使用200 ns短强脉冲离子束(IPIB)进行大面积辐照,以退火和增强沉积在温度敏感的聚对苯二甲酸乙二醇酯(PET)衬底上的AgNW网络的导电性。TCF薄片电阻显示出辐射剂量依赖性,降低了四个数量级,达到70Ω/sq的值,而不会损坏聚合物基底,其透明度保持在94%。IPIB辐照使AgNW网络融合到PET基材中,从而大大增强了附着力。传热模拟表明,热量来源于TCF的近表面层,持续时间极短。实验和模拟结果表明,IPIBs辐照为沉积在温度敏感衬底上的纳米材料的低温退火开辟了新的前景。

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