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Screen-printed Microsensors Using Polyoctyl-thiophene (POT) Conducting Polymer As Solid Transducer for Ultratrace Determination of Azides

机译:使用聚辛基噻吩(POT)导电聚合物作为固态传感器的丝网印刷微传感器用于叠氮化物的超痕量测定

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摘要

Two novel all-solid-state potentiometric sensors for the determination of azide ion are prepared and described here for the first time. The sensors are based on the use of iron II-phthalocyanine (Fe-PC) neutral carrier complex and nitron-azide ion-pair complex (Nit-N3) as active recognition selective receptors, tetradodecylammonium tetrakis(4-chlorophenyl) borate (ETH 500) as lipophilic cationic additives and poly(octylthiophene) (POT) as the solid contact material on carbon screen-printed devices made from a ceramic substrate. The solid-contact material (POT) is placed on a carbon substrate (2 mm diameter) by drop-casting, followed, after drying, by coating with a plasticized PVC membrane containing the recognition sensing complexes. Over the pH range 6-9, the sensors display fast (< 10 s), linear potentiometric response for 1.0 × 10−2–1.0 × 10−7 M azide with low detection limit of 1.0 × 10−7 and 7.7 × 10−8 M (i.e., 6.2–4.8 ng/ml) for Fe-PC/POT/and Nit-N3/POT based sensors, respectively. The high potential stability and sensitivity of the proposed sensors are confirmed by electrochemical impedance spectroscopy (EIS) and constant-current chronopotentiometry measurement techniques. Strong membrane adhesion and absence of delamination of the membrane, due to possible formation of a water film between the recognition membranes and the electron conductor are also verified. The proposed sensors are successfully applied for azide quantification in synthetic primer mixture samples. Advantages offered by these sensors are the robustness, ease of fabrication, simple operation, stable potential response, high selectivity, good sensitivity and low cost.
机译:首次准备并描述了两种用于确定叠氮化物离子的新型全固态电位传感器。传感器基于铁II-酞菁(Fe-PC)中性载体配合物和氮叠氮化物离子对配合物(Nit-N3 -)作为主动识别选择性受体四十二烷基铵四(kiss)的使用。在由陶瓷基板制成的碳丝网印刷设备上,作为亲脂性阳离子添加剂的硼酸4-氯苯基酯(ETH 500)和作为固体接触材料的聚辛基噻吩(POT)。通过滴铸将固体接触材料(POT)放置在碳基材(直径2 mm)上,然后在干燥后,用含有识别传感复合物的增塑PVC膜涂覆。在6-9的pH范围内,传感器在1.0×10 −2 –1.0×10 −7 叠氮化物下显示快速(<10 s)线性电位响应Fe-PC / POT / Nit-的低检测限为1.0×10 −7 和7.7×10 −8 M(即6.2–4.8 ng / ml)基于N3 - / POT的传感器。电化学阻抗谱(EIS)和恒流计时电位测量技术证实了所提出传感器的高电位稳定性和灵敏度。还证实了由于在识别膜和电子导体之间可能形成水膜而导致的强膜粘附力和没有膜的分层。提出的传感器已成功应用于合成底漆混合物样品中叠氮化物的定量分析。这些传感器提供的优点是坚固,易于制造,操作简单,电位响应稳定,选择性高,灵敏度高和成本低。

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