Department of Control and Instrumentation Engineering, Korea University, Jochiwon 339-700, Korea.
Nanotechnology. 2013 Mar 1;24(8):085501. doi: 10.1088/0957-4484/24/8/085501. Epub 2013 Feb 1.
We report on the preparation of capacitive-type relative humidity sensors incorporating plasma-activated multi-wall carbon nanotube (p-MWCNT) electrodes and on their performance compared with existing commercial technology. Highly open porous conductive electrodes, which are almost impossible to obtain with conventional metal electrodes, are fabricated by spray-depositing MWCNT networks on a polyimide layer. Oxygen plasma activation of the MWCNTs is also explored to improve the water adsorption of the MWCNT films, by introducing oxygen-containing functional groups on the CNT surface. Polyimide humidity sensors with optimized p-MWCNT network electrodes exhibit exceptionally fast response times (1.5 for adsorption and 2 s for desorption) and high sensitivity (0.75 pF/% RH). These results may be partially due to their percolated pore structure being more accessible for water molecules, expending the diffusion of moisture to the polyimide sensing film, and partially due to the oxygenated surface of p-MWCNT films, allocating more locations for adsorption or attraction of water molecules to contribute to the sensitivity.
我们报告了一种制备电容式相对湿度传感器的方法,该传感器采用等离子体激活多壁碳纳米管(p-MWCNT)电极,并将其性能与现有商业技术进行了比较。通过在聚酰亚胺层上喷涂 MWCNT 网络,制备出了具有高度开放多孔导电性能的电极,而这几乎是不可能通过传统金属电极获得的。此外,我们还探索了通过在 CNT 表面引入含氧官能团来提高 MWCNT 薄膜的水吸附能力,对 MWCNT 进行氧等离子体激活。具有优化的 p-MWCNT 网络电极的聚酰亚胺湿度传感器表现出异常快速的响应时间(吸附时为 1.5s,解吸时为 2s)和高灵敏度(0.75 pF/%RH)。这些结果可能部分归因于其连通孔结构更容易被水分子进入,增加了水分向聚酰亚胺感测膜的扩散,部分归因于 p-MWCNT 薄膜的含氧表面,为水分子的吸附或吸引提供了更多的位置,从而提高了灵敏度。