Mohammadi Vajihe, Saraji Mohammad
Department of Chemistry, Isfahan University of Technology, Isfahan, 84156-83111, Iran.
Mikrochim Acta. 2023 Dec 29;191(1):66. doi: 10.1007/s00604-023-06139-6.
A user-friendly, cost-effectively, portable, and environmentally friendly colorimetric sensor for the quantitative determination of formaldehyde was developed based on the combining of microfluidic paper-based analytical device (μPAD), headspace microextraction (HSME), and digital image colorimetry. Coupling HSME and μPAD led to enhancements in selectivity and sensitivity of the sensor through sample cleanup and analyte enrichment. To construct the μPAD-HSME device, two pieces of paper as the sample and detection zone were placed facing each other so that a small common and sealed space was created between them. The color change occurred when the analyte in the gaseous form crossed this gap and reached the detection zone. Colorimetric sensing in the detection zone was performed based on the Hantzsch reaction. The color change in the detection zone was recorded by a smartphone and digital images were processed using image analysis software based on the RGB model. The influence of some key variables on the sensitivity of the method including derivatization reagent composition, sample volume, extraction temperature, and extraction time was studied and optimized. The linear dynamic range of the method was obtained in two ranges of 0.10-0.75 and 0.75-5.0 mg L with a limit of detection of 0.03 mg L. The recoveries were in the range 80-126% for the quantification of formaldehyde in textile, milk, and wastewater samples.
基于微流控纸基分析装置(μPAD)、顶空微萃取(HSME)和数字图像比色法的结合,开发了一种用户友好、经济高效、便携且环保的用于定量测定甲醛的比色传感器。HSME与μPAD的联用通过样品净化和分析物富集提高了传感器的选择性和灵敏度。为构建μPAD-HSME装置,将两张分别作为样品区和检测区的纸面对面放置,从而在它们之间形成一个小的公共密封空间。当气态分析物穿过此间隙到达检测区时会发生颜色变化。检测区的比色传感基于汉茨希反应进行。检测区的颜色变化由智能手机记录,并使用基于RGB模型的图像分析软件处理数字图像。研究并优化了一些关键变量(包括衍生试剂组成、样品体积、萃取温度和萃取时间)对该方法灵敏度的影响。该方法的线性动态范围在0.10 - 0.75和0.75 - 5.0 mg/L两个范围内,检测限为0.03 mg/L。在纺织品、牛奶和废水样品中甲醛定量的回收率范围为80 - 126%。