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Highly Flexible Touch Screen Panel Fabricated with Silver Nanowire Crossing Electrodes and Transparent Bridges

机译:高度灵活的触摸屏面板,由银纳米线交叉电极和透明桥制成

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摘要

A capacitive-type touch screen panel (TSP) composed of silver nanowire (AgNW) crossing electrodes and transparent bridge structures was fabricated on a polycarbonate film The transparent bridge structure was formed with a stack of Al-doped ZnO (AZO) electrodes and SU-8 insulator. The stable and robust continuity of the bridge electrode over the bridge insulator was achieved by making the side-wall slope of the bridge insulator low and depositing the conformal AZO film with atomic layer deposition. With an extended exposure time of photolithography, the lower part of the SU-8 layer around the region uncovered by the photomask can be exposed enough to the UV light scattered from the substrate. This leads to the low side-wall slope of the bridge insulator. The fabricated TSP sample showed a large capacitance change of 22.71% between with and without touching. Our work supplies the technological clue for ensuring long-term reliability to the highly flexible and transparent TSP made by using conventional fabrication processes
机译:在聚碳酸酯膜上制作了由银纳米线(AgNW)交叉电极和透明桥结构组成的电容式触摸屏面板(TSP)。透明桥结构由掺Al的ZnO(AZO)电极和SU- 8个绝缘子。通过降低电桥绝缘子的侧壁斜率并通过原子层沉积来沉积保形AZO膜,可以实现电桥绝缘子上电桥电极的稳定而稳定的连续性。随着光刻的曝光时间延长,SU-8层的未被光掩模覆盖的区域的下部可以充分暴露于从基板散射的紫外线。这导致桥式绝缘子的侧壁斜率低。制成的TSP样品在接触和不接触之间显示出22.71%的大电容变化。我们的工作为使用常规制造工艺制造的高度灵活和透明的TSP提供了确保长期可靠性的技术线索

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