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Disposable Electrochemical Sensor for Determination of Nitroaromatic Compounds by a Single-Run Approach

机译:单次运行法测定硝基芳族化合物的一次性电化学传感器

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Environmental and security applications have generated major demands for effective field-deployable tools for detecting nitroaromatic compounds, such as chloramphenicol (an antibiotic), parathion (an organophosphate nerve agent), and TNT (2,4,6-trinitrotoluene, an explosive) in a fast, simple, sensitive, reliable, and cost-effective manner. We report here a single-run approach for such a purpose. The reduction potential of different nitroaromatic compounds was found to systematically shift with the substituent group at an electrochemically preanodized screen-printed carbon electrode. The preanodization treatment makes the peak sharp and hence provides a precise way to identify the substituent effect on nitroaromatic compounds. By using potential shifts as analytical characteristics of nitroaromatic compounds, a suitable internal standard can be chosen based on the criteria of well-separated peak potential and rarely found in the real sample of interest. Simply by measuring the ratio of peak currents between analytes of interest and internal standard, the analysis can be done in a single-run measurement. Both the matrix effect and the variation of electrode during the preparation process can be canceled out in this approach and thus allows for a high-precision analysis. Just by placing a 20-(mu)L drop on a single-use amperometric sensor strip incorporating a three-electrode configuration is enough for rapid and sensitive detection of nitroaromatic compounds by square-wave voltammetry. For example, the linear detection range can be up to 100 (mu)M with a detection limit of 0.42 (mu)M (S/N velence 3) in the detection of chloramphenicol. This approach was successfully demonstrated in real sample analysis to verify the applicability of the method. The promising performances open new possibilities for rapid determination of nitroaromatic compounds in environmental and biological samples.
机译:环境和安全应用对有效的现场部署工具产生了巨大的需求,这些工具可用于检测氯霉素(一种抗生素),对硫磷(一种有机磷酸神经毒剂)和TNT(2,4,6-三硝基甲苯,一种炸药)等硝基芳香化合物。快速,简单,灵敏,可靠且具有成本效益的方式。为此,我们在这里报告了一种单次运行方法。发现不同的硝基芳族化合物的还原电位在电化学预阳极氧化的丝网印刷碳电极上随着取代基而系统地移动。预阳极氧化处理使峰尖锐,因此提供了一种精确的方法来确定取代基对硝基芳族化合物的影响。通过使用电势漂移作为硝基芳族化合物的分析特征,可以根据峰电势良好分离的标准选择合适的内标,而在实际的实际样品中很少发现。只需通过测量目标分析物和内标之间的峰值电流之比,即可通过单次运行测量进行分析。用这种方法可以抵消基体效应和制备过程中电极的变化,从而可以进行高精度分析。只需在结合了三电极配置的一次性安培传感器条上放置20 µL滴就足以通过方波伏安法快速灵敏地检测硝基芳香族化合物。例如,在检测氯霉素中,线性检测范围可以高达100μM,检测极限为0.42μM(S / N velence 3)。该方法已在实际样品分析中成功证明,可以验证该方法的适用性。令人鼓舞的性能为快速测定环境和生物样品中的硝基芳香化合物开辟了新的可能性。

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