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首页> 外文期刊>Journal of Applied Polymer Science >Trichloroacetic acid-imprinted polypyrrole film and its property in piezoelectric quartz crystal microbalance and electrochemical sensors to application for determination of haloacetic acids disinfection by-product in drinking water
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Trichloroacetic acid-imprinted polypyrrole film and its property in piezoelectric quartz crystal microbalance and electrochemical sensors to application for determination of haloacetic acids disinfection by-product in drinking water

机译:三氯乙酸印迹聚吡咯膜及其在压电石英晶体微天平和电化学传感器中的性能在测定饮用水中卤代乙酸消毒副产物中的应用

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摘要

A molecularly trichloroacetic acid (TCAA) imprinted non-crosslinked polypyrole (TCAA-MIPpy) has been successfully prepared and evaluated in its properties for both piezoelectric quartz crystal microbalance (QCM) and electrochemical means of detection, and application of such sensors for determination of haloacetic acid concentrations in water. Haloacetic acid selectivity was demonstrated in gravimetric or in electrochemical sensors via either cyclic voltammetric or interdigitated conductometric (IDC) analyses studies upon comparison with nonimprinted polypyrrole and TCAA-imprinted polypyrrole. The measurement results with all these systems revealed that the prepared molecularly imprinted polymer can recognize TCAA well from structurally similar compounds. The TCAA-MIPpy incorporated with only the IDC transduction system produced the specific signal for TCAA detection in aqueous environment, which is useful for the quantifying TCAA disinfection by-product in water. The analytical application for determination of TCAA in real-life samples was readily achieved with the incorporation of TCAA-MIPpy in the IDC analysis system, the results revealing the high sensitivity and selectivity of the method.
机译:已经成功制备了分子三氯乙酸(TCAA)印迹非交联聚吡咯(TCAA-MIPpy),并对其压电石英晶体微天平(QCM)和电化学检测手段的性能进行了评估,并将此类传感器用于卤代乙酸的测定水中的酸浓度。通过与非压印聚吡咯和TCAA压印聚吡咯进行比较,通过循环伏安法或叉指式电导(IDC)分析研究在重量法或电化学传感器中证明了卤乙酸的选择性。所有这些系统的测量结果表明,所制备的分子印迹聚合物可以从结构相似的化合物中很好地识别TCAA。仅与IDC转导系统结合使用的TCAA-MIPpy产生了用于水性环境中TCAA检测的特定信号,这对于定量水中的TCAA消毒副产物很有用。通过将TCAA-MIPpy引入IDC分析系统中,可以轻松实现用于测定实际样品中TCAA的分析应用,结果表明该方法具有很高的灵敏度和选择性。

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