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Transparent conducting film fabricated by metal mesh method with Ag and cu@ag mixture nanoparticle pastes

机译:Ag和Cu @ Ag混合纳米颗粒糊剂金属丝网法制备的透明导电膜

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摘要

Transparent conducting electrode film is highly desirable for application in touch screen panels (TSPs), flexible and wearable displays, sensors, and actuators. A sputtered film of indium tin oxide (ITO) shows high transmittance (90%) at low sheet resistance (50 Ω/cm2). However, ITO films lack mechanical flexibility, especially under bending stress, and have limitation in application to large-area TSPs (over 15 inches) due to the trade-off in high transmittance and low sheet resistance properties. One promising solution is to use metal mesh-type transparent conducting film, especially for touch panel application. In this work, we investigated such inter-related issues as UV imprinting process to make a trench layer pattern, the synthesis of core-shell-type Ag and Cu@Ag composite nanoparticles and their paste formulation, the filling of Ag and Cu@Ag mixture nanoparticle paste to the trench layer, and touch panel fabrication processes.
机译:透明导电电极膜非常适合用于触摸屏面板(TSP),柔性和可穿戴显示器,传感器和执行器中。溅射的铟锡氧化物(ITO)膜在低薄层电阻(50Ω/ cm2)时显示出高透射率(90%)。然而,ITO膜缺乏机械柔韧性,特别是在弯曲应力下,并且由于在高透射率和低薄层电阻特性之间的权衡而在大面积TSP(超过15英寸)中的应用受到限制。一种有希望的解决方案是使用金属网状透明导电膜,尤其是在触摸面板应用中。在这项工作中,我们研究了相互关联的问题,例如制作沟槽层图案的紫外线压印工艺,核-壳型Ag和Cu @ Ag复合纳米颗粒的合成及其糊剂的配方,Ag和Cu @ Ag的填充将纳米粒子混合物粘贴到沟槽层,然后进行触摸面板制造工艺。

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