首页> 外文会议>SPIE Conference on Nondestructive Characterization for Composite Materials, Aerospace Engineering, Civil Infrastructure, and Homeland Security >The Development of Chloride Ion Selective Polypyrrole Thin Film on aLayer-by-Layer Carbon Nanotube Working Electrode
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The Development of Chloride Ion Selective Polypyrrole Thin Film on aLayer-by-Layer Carbon Nanotube Working Electrode

机译:逐层氯离子选择性聚吡咯薄膜的研制逐层碳纳米管工作电极

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摘要

A chloride ion selective thin film sensor is proposed for measuring chloride ion concentration, which is an environmental parameter correlated to corrosion. In this work, electrochemical polymerization of Polypyrrole (PPy) doped with chloride ions was achieved on the top of a carbon nanotube (CNT) thin film as a working electrode in an electrochemical cell. The underlying CNT layer conjugated with doped PPy thin film can form a multifunctional "self-sensing" material platform for chloride ion detection in a concrete environment. The paper presents the first type of work using CNT and PPy as hybrid materials for chloride ion sensing. Electrochemical polymerization of PPy results in oxidation that yields an average of one positive charge distributed over four pyrrole units. This positive charge is compensated by negatively-charged chloride ions in the supporting electrolyte. In effect, the chloride ion-doped PPy has become molecularly imprinted with chloride ions thereby providing it with some degree of perm-selectivity for chloride ions. The detection limit of the fabricated chloride ion-doped PPy thin film can reach 10-8 M and selectivity coefficients are comparable to those in the literature. The reported work aims to lay a strong foundation for detecting chloride ion concentrations in the concrete environment.
机译:提出了一种用于测量氯离子浓度的氯离子选择性薄膜传感器,其是与腐蚀相关的环境参数。在这项工作中,在碳纳米管(CNT)薄膜的顶部上以电化学电池中的工作电极在碳纳米管(CNT)薄膜的顶部上实现了掺杂氯离子的聚氯吡咯(PPY)的电化学聚合。与掺杂的PPY薄膜缀合的底层CNT层可以形成混凝土环境中的氯离子检测的多功能“自感应”材料平台。本文呈现了使用CNT和PPY作为氯离子传感的混合材料的第一种作品。 PPY的电化学聚合导致氧化,产生分布在四个吡咯单元上的一个正电荷的平均电荷。通过支撑电解质中的带负电荷的氯离子来补偿该正电荷。实际上,氯离子掺杂的PPY与氯离子进行分子印象,从而为氯离子提供一定程度的渗透性选择性。制造的氯离子掺杂PPY薄膜的检测极限可以达到10-8μm,选择性系数与文献中的选择性系数相当。据报道的工作旨在为检测混凝土环境中的氯离子浓度奠定强大的基础。

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