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Colorimetric paper-based device for gaseous hydrogen cyanide quantification based on absorbance measurements

机译:基于比色纸的基于吸光度测量的气态氰化氢定量装置

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Hydrogen cyanide is a highly toxic compound employed for applications such as electroplating, production of organic solvents, fish stunning, and even as a chemical weapon. In this work, we describe a new microfluidic paper-based assay for selective cyanide determination, based on the reaction of the cyanide anion with palladium dimethylglyoximate (DMG) followed by colorimetric reaction of DMG with nickel. Quantification was performed by measuring the absorbance of light passing through the paper, employing an LED emitting at 525 nm and a log ratio amplifier circuit emulating Lambert-Beer's law. This offers an alternative to the smartphone-based methodologies for signal treatment usually employed in colorimetric μPAD-based methods The technique enabled linear calibration within the range 100–500 ppb of HCN, as well as a detection limit of 10 ppb for HCN in gaseous samples. The sampling time used for this concentration range was 5 min. The method was also tested for the quantification of cyanide in aqueous samples by adding H3PO4to the sample, followed by exposure of the paper sensor to the gaseous HCN generated. A detection limit of 1 μM was achieved, which makes the method also suitable for detection of cyanide in liquid samples.
机译:氰化氢是一种剧毒化合物,用于电镀,有机溶剂生产,鱼肉令人惊叹,甚至用作化学武器。在这项工作中,我们描述了一种新的基于微流体纸的选择性氰化物测定方法,该方法基于氰化物阴离子与二甲基乙二肟酸钯(DMG)的反应,然后是DMG与镍的比色反应。通过测量在525 lightnm处发射的LED和模拟兰伯特-比尔定律的对数比放大器电路,通过测量穿过纸张的光的吸收率来进行量化。这提供了比色法基于μPAD的方法中通常采用的基于智能手机的信号处理方法的替代方法。该技术实现了HCN 100–500 ppb范围内的线性校准以及气态样品中HCN的检出限为10 ppb 。用于该浓度范围的采样时间为5分钟。还通过向样品中加入H3PO4,然后将纸传感器暴露于所生成的气态HCN中,对该方法进行了定量测定水性样品中氰化物的测试。检出限达到1μm,这使得该方法也适用于液体样品中氰化物的检测。

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