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Highly Sensitive Paper-based Analytical Devices with the Introduction of a Large-Volume Sample via Continuous Flow

机译:高灵敏度的纸质分析设备,并通过连续流引入大量样品

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The implementation of continuous flow in paper-based analytical devices (PADs) was challenging because of the large-volume introduction that was created; but this allowed for the development of novel types of PADs for preconcentration, separation, and sensitive detection. In this study, pump-free continuous flow was applied to a distance-based PAD for the determination of iron ions. Continuous flow enabled the introduction of a volume that exceeded what was necessary to fill the hydrophilic channel of a PAD. Thus, this continuous-flow method significantly improved both the limits of detection (LOD) and the limits of quantification (LOQ) for a distance-based PAD by increasing the sample volume that could be introduced into the PAD. The values for LOD and LOQ were 20 and 26 ppb, respectively, which were more than 150-times lower than that obtained using a small sample volume (50 μL), and were comparable to those of inductively coupled plasma–atomic emission spectrometry. The continuous-flow technique was applicable to the determination of iron ions at levels of several tens of ppb in natural water without preconcentration.
机译:由于创建了大量的介绍,因此在纸质分析设备(PAD)中实现连续流动具有挑战性。但这允许开发用于预浓缩,分离和灵敏检测的新型PAD。在这项研究中,将无泵连续流应用于基于距离的PAD来测定铁离子。连续流动使得引入的体积超过了填充PAD亲水通道所需的体积。因此,此连续流方法通过增加可以引入PAD的样本量,显着改善了基于距离的PAD的检测限(LOD)和定量限(LOQ)。 LOD和LOQ的值分别为20和26 ppb,比使用小样品量(50μL)获得的值低150倍以上,并且与电感耦合等离子体-原子发射光谱法的值相当。连续流技术适用于在不进行预浓缩的情况下测定天然水中数十ppb的铁离子。

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