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首页> 外文期刊>European Polymer Journal >Response mechanism of novel polyaniline composite conductimetric pH sensors and the effects of polymer binder, surfactant and film thickness on sensor sensitivity
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Response mechanism of novel polyaniline composite conductimetric pH sensors and the effects of polymer binder, surfactant and film thickness on sensor sensitivity

机译:新型聚苯胺复合电导pH传感器的响应机理以及聚合物粘合剂,表面活性剂和膜厚度对传感器灵敏度的影响

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摘要

This paper reports on investigations into the response mechanism of novel polyaniline composition conductimetric pH sensors and the effects of polymer binder, surfactant and film thickness on this response. It was revealed through X-ray photoelectron spectroscopy, focussed ion beam milling and impedance spectroscopy that the response mechanism was due to the deprotonation of the polymer backbone nitrogen atoms located on the uppermost surface level of the functional material particles. The equivalent circuits for the sensing layer were modelled using the Cole-Cole model for a range of pH environments. The optimum sensing layer composition was determined to contain less than 50 wt.% polymer binder with 5 wt.% surfactant. This composition was determined by examining the effects of both binder and surfactant on the electrical characteristics and sensor response of the composite films. The thickness of the sensing layer was found to have no discernable response on the sensing characteristics of the conductimetric pH sensors.
机译:本文报道了对新型聚苯胺组合物电导pH传感器的响应机理的研究,以及聚合物粘合剂,表面活性剂和膜厚度对该响应的影响。通过X射线光电子能谱,聚焦离子束铣削和阻抗谱表明,其响应机理是由于位于功能材料颗粒最表面的聚合物主链氮原子的去质子作用。感应层的等效电路是使用Cole-Cole模型为一系列pH环境建模的。确定最佳感测层组合物包含小于50重量%的聚合物粘合剂和5重量%的表面活性剂。通过检查粘合剂和表面活性剂对复合膜的电特性和传感器响应的影响来确定该组成。发现感应层的厚度对电导pH传感器的感应特性没有明显的响应。

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