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Fabrication of a Flexible and Transparent Touch Sensor Using Single-Walled Carbon Nanotube Thin-Films

机译:使用单壁碳纳米管薄膜的柔性透明触摸传感器的制造

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Reported herein are the fabrication and demonstration of a flexible and transparent touch sensor using carbon nanotube thin films (CNTFs). The CNTF was fabricated by vacuum filtration and was transferred CNTF to polydimethylsiloxane (PDMS) by water-assisted stamping method. The sheet resistance of the CNTF decreased by ~74% after HNO_3 treatment. The CNTF touch sensor was fabricated similarly to the conventional four-wire touch screen structures. PDMS was used for the upper plate to absorb the tensile and compressive strain and polyethylene terephthalate (PET) for the lower plate to provide device stability during bending action. The CNTF touch sensor showed high optical transmittance (over 80%) and high sensitivity with the measured touch activation pressure of 23 kPa. Cyclic pressure (38 kPa) was applied at 0.5 Hz and good repeatability was found for several hundred cycles. The results show that the CNTF flexible touch sensor can be applied to future flexible electronic interfaces such as, e-paper and flexible displays.
机译:本文报道了使用碳纳米管薄膜(CNTF)的柔性透明触摸传感器的制造和演示。通过真空过滤制备CNTF,并通过水辅助冲压法将CNTF转移到聚二甲基硅氧烷(PDMS)中。 HNO_3处理后,CNTF的薄层电阻下降了约74%。 CNTF触摸传感器的制造与传统的四线触摸屏结构相似。 PDMS用于上板以吸收拉伸和压缩应变,而聚对苯二甲酸乙二醇酯(PET)用于下板以在弯曲动作期间提供设备稳定性。 CNTF触摸传感器在测得的23 kPa触摸激活压力下显示出高透光率(超过80%)和高灵敏度。在0.5 Hz处施加循环压力(38 kPa),并在数百个循环中发现了良好的重复性。结果表明,CNTF柔性触摸传感器可以应用于未来的柔性电子界面,例如电子纸和柔性显示器。

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