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Use of solution-processed zinc oxide to prevent the breakdown in silver nanowire networks

机译:使用溶液加工的氧化锌以防止银纳米线网络中的击穿

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The electrical breakdown is a bottleneck preventing AgNW networks from being used in high-current electronics such as transparent heaters or similar applications. The process of failure confirms that Joule-heating plays a key role in the formation of cracks perpendicular to the voltage direction. To improve the transfer of Joule heating, solution-processed ZnO nanoparticles were deposited on a gravure printed AgNW random network with good transparency. The AgNW-ZnO nanocomposites show better heating uniformity at higher temperatures because of their improved thermal conductivity. A 57.7% higher power density was obtained without failure, as well as the improved maximum average temperature rise from 72.2 degrees C to 97.9 degrees C, after the AgNW was composited with ZnO. This work opens up a new method to study AgNW failures for applications in high-current electronics.
机译:电击是防止AGNW网络在诸如透明加热器或类似应用的高电流电子设备中使用的瓶颈。 故障过程证实,焦耳加热在垂直于电压方向的裂缝中起着关键作用。 为了改善焦耳加热的转移,沉积溶液加工的ZnO纳米粒子,沉积在凹版印刷的Agnw随机网络上,透明度良好。 由于其导热性改善,AgNW-ZnO纳米复合材料在较高温度下显示出更好的加热均匀性。 获得57.7%的功率密度,没有发生故障,除了用ZnO合成AgNW之后,在72.2℃至97.9摄氏度下提高的最大平均温度升高至97.9摄氏度。 这项工作开辟了一种研究高电流电子产品应用的AGNW故障的新方法。

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