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Multiplexed Paper Analytical Device for Quantification of Metals using Distance-Based Detection

机译:使用基于距离的检测对金属进行定量的多路纸分析设备

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摘要

Exposure to metal-containing aerosols has been linked with adverse health outcomes for almost every organ in the human body. Commercially available techniques for quantifying particulate metals are time-intensive, laborious, and expensive; often sample analysis exceeds $100. We report a simple technique, based upon a distance-based detection motif, for quantifying metal concentrations of Ni, Cu, and Fe in airborne particulate matter using microfluidic paper-based analytical devices. Paper substrates are used to create sensors that are self-contained, self-timing, and require only a drop of sample for operation. Unlike other colorimetric approaches in paper microfluidics that rely on optical instrumentation for analysis, with distance-based detection, analyte is quantified visually based on the distance of a colorimetric reaction, similar to reading temperature on a thermometer. To demonstrate the effectiveness of this approach, Ni, Cu, and Fe were measured individually in single-channel devices; detection limits as low as 0.1, 0.1, and 0.05 µg were reported for Ni, Cu, and Fe. Multiplexed analysis of all three metals was achieved with detection limits of 1, 5, and 1 µg for Ni, Cu, and Fe. We also extended the dynamic range for multi-analyte detection by printing concentration gradients of colorimetric reagents using an off the shelf inkjet printer. Analyte selectivity was demonstrated for common interferences. To demonstrate utility of the method, Ni, Cu, and Fe were measured from samples of certified welding fume; levels measured with paper sensors matched known values determined gravimetrically.
机译:暴露于含金属的气溶胶与人体几乎每个器官的不良健康后果有关。用于量化颗粒金属的可商购技术费时,费力且昂贵。样本分析经常超过$ 100。我们报告了一种简单的技术,基于基于距离的检测主题,使用基于微流体纸的分析设​​备来量化空气中颗粒物质中Ni,Cu和Fe的金属浓度。纸质基材用于创建独立的,自动定时的传感器,并且只需要一滴样品即可进行操作。与依靠光学仪器进行分析的纸张微流控技术中的其他比色方法不同,基于距离的检测是根据比色反应的距离在视觉上对分析物进行定量的,类似于在温度计上读取温度。为了证明这种方法的有效性,在单通道设备中分别测量了镍,铜和铁。 Ni,Cu和Fe的检出限低至0.1、0.1和0.05 µg。 Ni,Cu和Fe的检出限分别为1、5和1 µg,从而对所有三种金属进行了多重分析。我们还通过使用现成的喷墨打印机打印比色试剂的浓度梯度,扩展了用于多分析物检测的动态范围。证明了对常见干扰物的分析物选择性。为了证明该方法的实用性,从合格的焊接烟气样品中测量了镍,铜和铁。用纸张传感器测得的水位与重量法确定的已知值相匹配。

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