Department of Mechanical, Aerospace and Biomedical Engineering, University of Tennessee , Knoxville 37996, United States.
ACS Appl Mater Interfaces. 2014 Dec 10;6(23):21721-9. doi: 10.1021/am506987w. Epub 2014 Nov 19.
Paper-based capacitive touch pads can be fabricated utilizing high-concentration silver nanowire inks needle-printed directly onto paper substrates through a 2D programmable platform. Post deposition, silver nanowire tracks can be photonically sintered using a camera flash to reduce sheet resistance similar to thermal sintering approaches. Touch pad sensors on a variety of paper substrates can be achieved with optimized silver nanowire tracks. Rolling and folding trials, which yielded only modest changes in capacitance and no loss of function, coupled with touch pad functionality on curved surfaces, suggest sufficient flexibility and durability for paper substrate touch pads to be used in diverse applications. A simplified model to predict touch pad capacitance variation ranges with differing touch conditions was developed, with good agreement against experimental results. Such paper-based touch pads have the advantage of simple structure, easy fabrication, and fast sintering, which holds promise for numerous commercial applications including low-cost portable devices where ultrathin and lightweight features, coupled with reliable bending stability are desirable.
基于纸张的电容式触摸板可以利用高浓度的银纳米线墨水通过二维可编程平台直接针式印刷到纸张衬底上进行制造。在沉积后,银纳米线可以通过相机闪光灯进行光烧蚀来进行烧结,以降低电阻,类似于热烧结方法。在各种纸张衬底上都可以实现经过优化的银纳米线轨道的触摸板传感器。滚动和折叠试验仅导致电容略有变化且没有功能丧失,再加上曲面触摸板功能,这表明纸张衬底触摸板具有足够的灵活性和耐用性,可以应用于各种不同的场合。已经开发出一种简化的模型来预测不同触摸条件下触摸板电容的变化范围,与实验结果吻合良好。这种基于纸张的触摸板具有结构简单、易于制造和快速烧结的优点,有望在许多商业应用中得到应用,包括低成本便携式设备,这些设备需要超轻薄的特点,并结合可靠的弯曲稳定性。