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首页> 外文期刊>Sensors and Actuators. B, Chemical >Effect of film thickness and different electrode geometries on the performance of chemical sensors made of nanostructured conducting polymer films
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Effect of film thickness and different electrode geometries on the performance of chemical sensors made of nanostructured conducting polymer films

机译:薄膜厚度和不同电极几何形状对纳米结构导电聚合物薄膜化学传感器性能的影响

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摘要

In this contribution, the effect of film thickness and different microelectrode geometries on the performance of chemical sensors made of nanostructured films of conducting polymer poly(o-ethoxyaniline) (POEA) and sulfonated polystyrene (PSS) is investigated. Both parameters present significant influence on the sensors response. Depending upon the concentration of Nad solutions, thicker films exhibit higher sensitivity to NaCl in comparison to thinner films according to impedance spectroscopy studies. The larger surface roughness of thicker films seems to be the main reason for such a behavior. Meanwhile, as the area of the gold electrodes is increased more sensitive sensors are obtained. At two different frequencies, namely 100 Hz and 1 kHz, the response of the sensors are found to be linear or exponentially dependent on the NaCl concentration. Furthermore, the sensors response is reproducible and NaCl can be detected at concentrations as low as 10 μM. The potential use of such sensors in an electronic tongue system is discussed.
机译:在此贡献中,研究了膜厚度和不同微电极几何形状对由导电聚合物聚(邻乙氧基苯胺)(POEA)和磺化聚苯乙烯(PSS)的纳米结构膜制成的化学传感器性能的影响。这两个参数都对传感器响应产生重大影响。根据Nad溶液的浓度,根据阻抗谱研究,较厚的薄膜与较薄的薄膜相比,对NaCl的敏感性更高。较厚膜的较大表面粗糙度似乎是这种行为的主要原因。同时,随着金电极面积的增加,可获得更多的敏感传感器。在两个不同的频率(即100 Hz和1 kHz)下,发现传感器的响应呈线性或指数依赖于NaCl浓度。此外,传感器的响应是可重现的,并且可以以低至10μM的浓度检测到NaCl。讨论了这种传感器在电子舌系统中的潜在用途。

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