Ceit, Manuel Lardizabal 15, 20018, Donostia/San Sebastián, Spain.
Universidad de Navarra, Tecnun, Manuel Lardizabal 13, 20018, Donostia/San Sebastián, Spain.
Mikrochim Acta. 2020 Nov 4;187(12):638. doi: 10.1007/s00604-020-04625-9.
A room temperature benzene and formaldehyde gas sensor system with an ionogel as sensing material is presented. The sensing layer is fabricated employing poly(N-isopropylacrylamide) polymerized in the presence of 1-ethyl-3-methylimidazolium ethyl sulfate ionic liquid onto gold interdigitated electrodes. When the ionogel is exposed to increasing formaldehyde concentrations employing N as a carrier gas, a more stable response is observed in comparison to the bare ionic liquid, but no difference in sensitivity occurs. On the other hand, when air is used as carrier gas the sensitivity of the system towards formaldehyde is decreased by one order of magnitude. At room temperature, the proposed sensor exhibited in air higher sensitivities to benzene, at concentrations ranging between 4 and 20 ppm resulting, in a limit of detection of 47 ppb, which is below the standard permitted concentrations. The selectivity of the IL towards HCHO and CH is demonstrated by the absence of response when another IL is employed. Humidity from the ambient air slightly affects the resistance of the system proving the protective role of the polymeric matrix. Furthermore, the gas sensor system showed fast response/recovery times considering the thickness of the material, suggesting that ionogel materials can be used as novel and highly efficient volatile organic compounds sensors operating at room temperature.Graphical abstract.
本文提出了一种以离子凝胶为敏感材料的室温苯和甲醛气体传感器系统。传感层是通过在 1-乙基-3-甲基咪唑硫酸乙酯离子液体存在下聚合聚(N-异丙基丙烯酰胺),在金叉指电极上制备而成的。当离子凝胶在氮气作为载气的情况下暴露于不断增加的甲醛浓度时,与裸露的离子液体相比,其响应更加稳定,但灵敏度没有差异。另一方面,当使用空气作为载气时,该系统对甲醛的灵敏度降低了一个数量级。在室温下,与空气中的苯相比,所提出的传感器在 4 至 20 ppm 的浓度范围内表现出更高的灵敏度,检测限低至 47 ppb,低于标准允许浓度。IL 对 HCHO 和 CH 的选择性通过使用另一种 IL 时没有响应来证明。来自环境空气的湿度对系统的电阻有轻微影响,证明了聚合基质的保护作用。此外,考虑到材料的厚度,该气体传感器系统具有快速的响应/恢复时间,表明离子凝胶材料可用作新型、高效的室温下挥发性有机化合物传感器。