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Studies on the interaction between humic substances and conducting polymers for sensor application

机译:腐殖质与导电聚合物在传感器中的相互作用研究

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The interaction between humic substances and poly(o-ethoxyaniline) (POEA), a conducting polymer, was investigated for both solution and self-assembled films. The results have shown that the humic substances induce a doping of POEA by protonation, as indicated by UV-Vis and Raman spectroscopies. The atomic force microscopy (AFM) studies on the self-assembled films have shown that the average roughness of the polymer film has increased after exposing it to humic substances (fulvic and humic acids), consistent with the interaction between POEA and humic substances. However, this change in morphology is reversible by washing the films with water in agreement with the electrical data allowing using this system in sensor applications. Here, the sensor formed by an array of different sensing units was able to detect and distinguish humic substances in aqueous solution, as shown by multivariate analysis (principal component analysis). The motivation to detect humic substance comes due to its importance in terms of quality control of water or soil.
机译:对于溶液膜和自组装膜,均研究了腐殖质与导电聚合物聚邻乙氧基苯胺(POEA)之间的相互作用。结果表明,如UV-Vis和拉曼光谱法所示,腐殖质通过质子化诱导了POEA的掺杂。对自组装膜的原子力显微镜(AFM)研究表明,将聚合物膜暴露于腐殖质物质(富里酸和腐殖酸)后,其平均粗糙度有所增加,这与POEA和腐殖质之间的相互作用一致。但是,形态学上的这种变化是可逆的,方法是与电数据相符,用水冲洗薄膜,从而允许在传感器应用中使用该系统。在这里,由多个不同的传感单元组成的传感器能​​够检测和区分水溶液中的腐殖质,如多元分析(主要成分分析)所示。检测腐殖质的动机归因于其在水或土壤质量控制方面的重要性。

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