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Bio-inspired surface treatment on touch screen panels (TSPs) for adhesion enhancement

机译:生物启发的触摸屏面板(TSP)表面处理,可增强附着力

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Immersion of substrates in a dilute aqueous solution of bio-inspired building blocks resulted a deposition of polydopamine thin film on the substrate. The Self-polymerization speed measured by ellipsometry was 1.6 nm/hr. Strong catalyst was added in order to enhance the speed. The resulting speed was increased from 1.6 nm/hr to 30 nm/hr. Bio-inspired surface treated PET and ITO-PET substrates with various treatment times were assembled with FPC using commercial acrylic ACF. As a result, adhesion strength between PET substrates and FPC was enhanced dramatically from below 10 gf/cm to over 500 gf/cm even when the treatment time was 5 min. Electrical contact resistance did not show any notable changes. It was presumably due to the sufficiently low thickness (2.5 nm) of bio-inspired thin film on the electrode.
机译:将基材浸入生物启发性建筑材料的稀水溶液中会导致聚多巴胺薄膜沉积在基材上。通过椭圆偏振光度法测量的自聚合速度为1.6nm / hr。添加强催化剂以提高速度。所得速度从1.6 nm / hr增加到30 nm / hr。使用商业丙烯酸ACF将具有各种处理时间的经过生物启发的表面处理过的PET和ITO-PET基材与FPC组装在一起。结果,即使当处理时间为5分钟时,PET基材与FPC之间的粘合强度也从低于10gf / cm显着提高至超过500gf / cm。接触电阻没有显示任何明显的变化。据推测,这是由于电极上的生物启发薄膜的厚度足够小(2.5 nm)。

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