Department of Chemistry, Faculty of Science, King Mongkut's University of Technology Thonburi, Prachautid Road, Thungkru, Bangkok 10140, Thailand.
ACS Sens. 2022 Jul 22;7(7):2093-2101. doi: 10.1021/acssensors.2c01003. Epub 2022 Jun 23.
This work introduces the concept of a counting-based measurement on paper analytical devices (cPADs) to improve the utilization of numerous reactions. The design of cPADs consists of two layers of paper substrates; the first layer contains a central sample zone combined with a radial surrounded by 12 detection zones that are predeposited with the various reagents, and the second layer acts as a connection channel between the sample zone and each detection zone. The solution can vertically flow from the first to the second layer and then move through the area to each subsequent detection zone. The analyte level can be evaluated by counting the number of detection zones that change color from a blank signal. Furthermore, our cPADs exhibit a capability of implementation for a broad series of reactions. Compared to the dPAD technique, some reactions that are possibly difficult to apply in such devices can be wholly enabled in our devices. The final color reaction on cPADs can apparently occur due to its identity. We applied this technique to the monitoring of carbaryl (CBR) and copper ions (Cu) using different reactions, including azo-coupling and complexation, respectively. Accordingly, this indicates an excellent result validated using the more traditional methods. Our cPADs can be applied for rapid screening of both CBR and Cu in water samples with outstanding accuracy and precision using a naked-eye measurement by a relatively unskilled person. We offer a simple platform on PADs for rapid screening, combining high cost-effectiveness within a miniaturized platform designed for use with onsite applications, which is thus suitable for several different reactions.
本文提出了基于计数的纸分析器件(cPAD)测量概念,以提高对众多反应的利用效率。cPAD 的设计由两层纸基底组成;第一层包含一个中央样品区,周围是 12 个检测区,这些检测区预先沉积了各种试剂,第二层作为样品区和每个检测区之间的连接通道。溶液可以从第一层垂直流向第二层,然后通过区域移动到每个后续的检测区。通过计数从空白信号改变颜色的检测区的数量,可以评估分析物的水平。此外,我们的 cPAD 还具有实现广泛反应系列的能力。与 dPAD 技术相比,在这些设备中可能难以应用的一些反应可以完全在我们的设备中实现。cPAD 上的最终颜色反应显然可以根据其特征发生。我们应用该技术分别通过偶联和络合等不同反应,监测了carbaryl(CBR)和铜离子(Cu)。因此,这表明使用更传统的方法得到了很好的验证结果。我们的 cPAD 可以用于在水样中快速筛选 CBR 和 Cu,通过相对非熟练人员的肉眼测量,具有出色的准确性和精密度。我们在 PAD 上提供了一个简单的快速筛选平台,结合了小型化平台的高成本效益,适用于现场应用,因此适用于多种不同的反应。