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Direct Analysis of Trace Phenolics with a Microchip: In-Channel Sample Preconcentration, Separation, and Electrochemical Detection

机译:使用Microchip直接分析痕量酚类:通道内样品预富集,分离和电化学检测

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摘要

A micrototal analytical method assembling in-channel preconcentration, separation, and electrochemical detection steps has been developed for trace phenolic compounds. A micellar electrokinetic chromatography separation technique was coupled with two preconcentration steps of field-amplified sample stacking (FASS) and field-amplified sample injection (FASI). An amperometric detection method with a cellulose-dsDNA-modified, screen-printed carbon electrode was applied to detect preconcentrated and separated species at the end of the channel. The microchip was composed of three parallel channels: first, two are for the sample preconcentration using FASS and FASI methods, and the third one is for the separation and electrochemical detection. The modification of the electrode surface improved the detection performance by enhancing the signal-to-noise characteristic without surface fouling of the electrode. The method was examined for the analysis of eight phenolic compounds. Experimental parameters affecting the analytical performance of the method were assessed and optimized. The preconcentration factor was increased by about 5200-fold as compared with a simple capillary zone electrophoretic analysis using the same channel. Reproducible response was observed during multiple injections of samples with a RSD of <8.0percent. The calibration plots were shown to be linear (with the correlation coefficient between 0.9913 and 0.9982) over the range of 0.4-600 nM. The sensitivity was between 0.17 +- 0.001 and 0.48 +- 0.006 nAM, with the detection limit of approx100 to approx150 pM based on S/N velence 3. The applicability of the method to the direct analysis of trace phenolic compounds in water samples was successfully demonstrated.
机译:痕量酚类化合物的总通量分析,组装,通道内预浓缩,分离和电化学检测步骤已经开发出来。胶束电动色谱分离技术与现场放大的样品堆叠(FASS)和现场放大的样品进样(FASI)的两个预浓缩步骤相结合。采用具有纤维素-dsDNA修饰的丝网印刷碳电极的安培检测方法,以检测通道末端的预浓缩和分离物种。微芯片由三个平行通道组成:第一,两个用于使用FASS和FASI方法进行样品预富集,第三个用于分离和电化学检测。电极表面的修饰通过增强信噪比特性而改善了检测性能,而不会造成电极表面污染。检查了该方法以分析八种酚类化合物。评估和优化了影响该方法分析性能的实验参数。与使用相同通道进行的简单毛细管区带电泳分析相比,预浓缩因子增加了约5200倍。在多次进样的RSD <8.0%的样品中观察到可再现的响应。校准曲线显示为在0.4-600 nM范围内呈线性(相关系数在0.9913和0.9982之间)。灵敏度为0.17±0.001至0.48±0.006 nA / nM,基于S / N velence 3的检测极限为约100至约150 pM。该方法适用于直接分析水中的痕量酚类化合物被成功演示。

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