Flow Innovation-Research for Science and Technology Laboratories (Firstlabs), Thailand; Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Mahidol University, Rama 6 Road, Bangkok 10400, Thailand.
Flow Innovation-Research for Science and Technology Laboratories (Firstlabs), Thailand; Department of Chemistry and Applied Analytical Chemistry Research Unit, Faculty of Science, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand.
Talanta. 2018 Sep 1;187:91-98. doi: 10.1016/j.talanta.2018.04.077. Epub 2018 Apr 26.
This work presents development of a microfluidic paper-based analytical device (µPAD) for direct determination of hypochlorite in household bleach. The recent design of a membraneless gas-separation microfluidic paper-based analytical device (MBL-GS µPAD) was employed to fabricate the hypochlorite-µPAD. Chlorine gas is generated in the µPAD via acidification of an aliquot of sample loaded on to the donor reservoir located at the bottom layer of the μPAD. The liberated chlorine gas diffuses through the air space to oxidize iodide ion previously impregnated in the acceptor reservoir at the top layer of the μPAD, leading to formation of the brown color of the tri-iodide ions. Digital image of the brown zone was captured at exactly 5 min after loading the acid. Image J program is used for analysis of the image for quantification of the hypochlorite in unit of g Cl L. It was found that employing a relatively large volume of the air space (ca. 270 µL) direct analysis of the high concentration of hypochlorite in the bleach was achieved without prior dilution. The method thus provides a linear working range of 25-100 g Cl L, which is suitable for most commercial household products. The calibration line has a coefficient of determination of 0.999. The precision of measurements is 0.96% RSD and 0.30% RSD at 30 g Cl L and 80 g Cl L (n = 10), respectively. Using the paired t-test (P = 0.05, n = 8), the method agreed well with the iodometric titration method. Our μPAD for hypochlorite is portable and cost-effective. The method is also "green" since there is a significant reduction in use of reagents compared to other conventional methods.
本工作开发了一种用于直接测定家用漂白剂中次氯酸盐的微流控纸基分析装置(µPAD)。最近设计的无膜气体分离微流控纸基分析装置(MBL-GS µPAD)被用于制造次氯酸盐-µPAD。通过将加样器储层(位于 µPAD 的底层)中加载的样品的等分酸化,在 µPAD 中产生氯气。释放的氯气通过空气间隙扩散到先前浸渍在 µPAD 的顶层接受器储层中的碘离子,导致形成三碘离子的棕色。在加载酸后恰好 5 分钟时拍摄棕色区域的数字图像。使用 Image J 程序分析图像以定量单位 g Cl L 中的次氯酸盐。结果发现,采用相对较大的空气间隙体积(约 270 µL),无需预先稀释即可直接分析漂白剂中的高浓度次氯酸盐。该方法因此提供了 25-100 g Cl L 的线性工作范围,适用于大多数商业家用产品。校准线的决定系数为 0.999。在 30 g Cl L 和 80 g Cl L 时,测量的精密度分别为 0.96% RSD 和 0.30% RSD(n = 10)。使用配对 t 检验(P = 0.05,n = 8),该方法与碘量滴定法吻合良好。我们的次氯酸盐 µPAD 具有便携性和成本效益。与其他传统方法相比,该方法还具有“绿色”特性,因为试剂的使用量大大减少。