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Modification of Silver Nanowire Coatings with Intense Pulsed Ion Beam for Transparent Heaters

机译:透明加热器强脉冲离子束的变形型纳米线涂层

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摘要

In this report, an improvement of the electrical performance and stability of a silver nanowire (AgNW) transparent conductive coating (TCC) is presented. The TCC stability against oxidation is achieved by coating the AgNWs with a polyvinyl alcohol (PVA) layer. As a result, a UV/ozone treatment has not affected the morphology of the AgNWs network and the PVA protection layer, unlike non-passivated TCC, which showed severe degradation. The irradiation with an intense pulsed ion beam (IPIB) of 200 ns duration and a current density of 30 A/cm2 is used to increase the conductivity of the AgNWs network without degradation of the temperature-resistant PVA coating and decrease in the TCC transparency. Simulations have shown that, although the sample temperature reaches high values, the ultra-high heating and cooling rates, together with local annealing, enable the delicate thermal processing. The developed coatings and irradiation strategies are used to prepare and enhance the performance of AgNW-based transparent heaters. A single irradiation pulse increases the operating temperature of the transparent heater from 92 to 160 °C at a technologically relevant voltage of 12 V. The proposed technique shows a great promise in super-fast, low-temperature annealing of devices with temperature-sensitive components.
机译:在本报告中,提高了银纳米线(AgNW)透明导电涂层(TCC)的电气性能和稳定性的提高。通过用聚乙烯醇(PVA)层涂覆AgNW来实现针对氧化的TCC稳定性。结果,与非钝化的TCC不同,UV /臭氧处理没有影响AGNWS网络和PVA保护层的形态,其显示出严重降解。使用200ns持续时间的强烈脉冲离子束(ipib)和30a / cm 2的电流密度的照射用于增加Agnws网络的导电性而不会降低耐温PVA涂层并降低TCC透明度。仿真表明,尽管样品温度达到高值,超高加热和冷却速率以及局部退火,使得能够精细热处理。开发的涂层和辐射策略用于制备和增强基于Agnw的透明加热器的性能。单个辐射脉冲在12V的技术相关电压下增加透明加热器的工作温度从92到160℃。所提出的技术在具有温度敏感部件的装置的超快速,低温退火中显示出很大的通知。

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