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首页> 外文期刊>Macromolecular Research >Multilayer-Structured Poly-Vanadium Acid/Polyaniline Composite: Synthesis and Properties for Humidity Sensing
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Multilayer-Structured Poly-Vanadium Acid/Polyaniline Composite: Synthesis and Properties for Humidity Sensing

机译:多层结构聚丙烯酸/聚苯胺复合材料:湿度感应的合成与性能

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摘要

A high-performance humidity sensor based on multilayer-structured poly-vanadium acid/polyaniline (V/PANI) composite was reported in this paper. Two-layer-structured V/PANI composite was fabricated by dip-coating poly-vanadium acid and electrochemically polymerizing PANI onto the interdigitated gold electrode in sequence, and then the process could be repeated to prepare the second two-layer-structured V/PANI composite. The crystalline phase properties and structural characteristics of the poly-vanadium acid, PANI, and V/PANI composite were characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy, and UV-visible spectroscopy, respectively. The morphological characteristics of the first two-layer-structured V/PANI composite and multilayer-structured V/PANI composite were characterized by scanning electron microscopy. Additionally, sensors based on the multilayer-structured V/PANI composite showed good humidity sensing properties. For instance, its impedance changed linearly for approximately four orders of magnitude in a wide range of 11-97% RH. Furthermore, it displayed small hysteresis (similar to 5% RH), fast response (t (90%) of 8 s and 12 s for adsorption and desorption processes, respectively), good stability. The possible sensing mechanism was analyzed by considering the special multilayer structure and using complex impedance spectra and the corresponding equivalent circuit of the sensor. The measurement results highlight the multilayer-structured V/PANI composite film is a candidate material for constructing humidity sensors.
机译:本文报道了一种基于多层结构聚丙烯酸/聚苯胺(V / PANI)复合材料的高性能湿度传感器。通过浸涂聚 - 钒酸和电化学聚合依次将PANI电化学聚合到阶段,通过浸涂到促进的金电极上,然后重复该方法以制备第二两层结构的V / PANI合成的。聚 - 钒酸,PANI和V / PANI复合材料的结晶相性和结构特性分别是X射线衍射(XRD),傅里叶变换红外光谱和UV可见光谱的表征。通过扫描电子显微镜表征第一两层结构V / PANI复合材料和多层结构V / PANI复合材料的形态学特性。另外,基于多层结构V / PANI复合物的传感器显示出良好的湿度感测性。例如,其阻抗在宽范围为11-97%RH中线性地改变了大约四个数量级。此外,它显示出小的滞后(类似于5%RH),分别为8 s和12秒的快速响应(T(90%),用于吸附和解吸过程,稳定性良好。通过考虑特殊的多层结构和使用复杂的阻抗谱和传感器的相应等效电路来分析可能的感测机理。测量结果突出显示多层结构的V / PANI复合膜是用于构建湿度传感器的候选材料。

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