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首页> 外文期刊>Sensors and Actuators >A Novel Method To Fabricate Ion-doped Microporous Polyimide Structures For Ultra-high Sensitive Humidity Sensing
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A Novel Method To Fabricate Ion-doped Microporous Polyimide Structures For Ultra-high Sensitive Humidity Sensing

机译:一种用于超高灵敏度湿度感测的离子掺杂微孔聚酰亚胺结构的新方法

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摘要

This research develops a fast, simple and reliable fabrication process for fabricating an ion-doped microporous polyimide (PI) membrane for ultra-high sensitive humidity sensing. The humidity sensing performance can be enhanced both by the high surface area of microporous PI film and the deliquescence property of the doped salt of potassium acetate. The porosity of polyimide membrane can be controlled by immersing the coated PI films in different concentrations of ethanol-water solution. SEM images confirm that the micropores interconnect with their neighboring pores and also open to the outside air. The EDS mapping results show that potassium acetate is successfully introduced into the microporous structure. The measured humidity sensitivity of the ion-doped microporous PI film (1.23 wt% of potassium acetate doped) is over 100,000 times greater than the same PI film without pore and salt doping. Moreover, the proposed humidity sensor shows good linear capacitance response in the humidity range of 20-90% RH (R~2 =0.9525). A 72-h stability test also confirms the proposed humidity sensors have good long-term stability in 20% RH, 50% RH and 80% RH environments.
机译:这项研究开发了一种快速,简单和可靠的制造工艺,用于制造用于超高灵敏度湿度感测的离子掺杂微孔聚酰亚胺(PI)膜。微孔PI膜的高表面积和掺杂的乙酸钾盐的潮解性均可提高湿度感测性能。聚酰亚胺膜的孔隙率可以通过将涂覆的PI膜浸入不同浓度的乙醇水溶液中来控制。 SEM图像证实了微孔与其相邻的孔相互连接并且还向外部空气开放。 EDS作图结果表明,乙酸钾已成功引入微孔结构中。离子掺杂的微孔PI膜(掺杂了1.23 wt%的乙酸钾)的湿度敏感度是没有孔隙和盐掺杂的相同PI膜的100,000倍以上。此外,提出的湿度传感器在20-90%RH的湿度范围内具有良好的线性电容响应(R〜2 = 0.9525)。 72小时的稳定性测试还证实了拟议的湿度传感器在20%RH,50%RH和80%RH的环境中具有良好的长期稳定性。

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