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Electrochemiluminescence integrated with paper chromatography for separation and detection of environmental hormones

机译:电化学发光与纸张色谱分离和检测环境荷尔蒙

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Electrochemiluminescence (ECL) is a powerful technique with the advantages of high sensitivity and a wide dynamic range. However, most of previous strategies based on ECL could only detect one analyte so that it is inevitable to investigate the selectivity and influences of interferences. Herein ECL integrated with paper chromatography was showed to be a potential platform for separation and detection of two environmental hormones (bisphenol A, BPA, and dibutyl phthalate, DBP). In our approach, carbon conductive tape was attached to an ITO glass and then modified with multi-walled carbon nanotubes (MWCNTs) and CdSe quantum dot (CdSe QDs) to fabricate the working electrodes for ECL detection. The synthesis of CdSe QDs was optimized based on their photoluminescence spectra and the ECL intensities. The modified electrode was then coupled in the paper-based analytical devices consisting of the filter paper modified with chitosan. Based on their quenching effect on the ECL emission of CdSe QDs, excellent linear relationships could be obtained between decreased ECL intensities and both the concentrations of DBP and BPA. Besides, DBP and BPA could be separated based on their retention time by tilting the filter paper for 30° and then detected with ECL. This study suggested that paper-based analytical devices could be potentially applied for separation and detection of multiple targets due to their ease of fabrication and convenient operation.
机译:电化学发光(ECL)是一种强大的技术,具有高灵敏度和宽动态范围的优点。然而,基于ECL的以前的大多数策略只能检测到一个分析物,以便研究干扰的选择性和影响是不可避免的。在此与纸色谱相结合的ECL被显示为分离和检测两种环境激素(双酚A,BPA和邻苯二甲酸二丁酯,DBP)的潜在平台。在我们的方法中,碳导电带附着在ITO玻璃上,然后用多壁碳纳米管(MWCNT)和CDSE量子点(CDSE QDS)改性以制造用于ECL检测的工作电极。基于它们的光致发光光谱和ECL强度来优化CdSe QDS的合成。然后将改性电极偶联在基于纸的分析装置中,由用壳聚糖改性的滤纸组成。基于它们对CDSE QDS的ECL排放的淬火影响,可以在降低的ECL强度和DBP和BPA的浓度之间获得优异的线性关系。此外,除了将滤纸倾斜30°,可以根据其保留时间分离DBP和BPA,然后用ECL检测到。本研究表明,由于其易于制造和操作方便,可以施加基于纸质的分析装置的分离和检测多个目标。

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