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Array of nanofibrous polyaniline-based sensors with different chemo-structural assembling

机译:基于纳米纤维聚苯胺的传感器阵列,具有不同的化疗组装

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Among various attempts of mimicking olfactory system the present work focuses on the sensorial surface of mammalian olfactory cells. The aim of this research is to develop, in a single step, synthetic fibres mimicking the long, no motile cilia of the olfactory cells. Electrospun conductive nanofibrous layers of doped polyaniline, suitably blended to a group of polymers capable to carry the jet, have been easily assembled on chemoresistors (interdigital microelectrodes, IDEs). Such highly sensitive sensors have been able to detect gases in traces of relevant medical significance, mainly because of high density of sorption sites of the sensor. Changing the carriers, the range of sensitivity to gases could be tuned. The key role of the selected carrier polymers (polyethylenoxide of different molecular weights, PEO, polyvinilpyrrolidone, PVP, and polystyrene, PS) to the final sensor features has been highlighted by morphology analysis (texture analysis) and electrical measurements before and after gas interaction.
机译:在模拟嗅觉系统的各种尝试中,本作本作的重点是哺乳动物嗅细胞的感觉表面。这项研究的目的是在一步中发展,在一步,合成纤维模仿长,没有嗅细胞的动机纤毛。电纺导电纳米纤维层的掺杂聚苯胺,适当地混合到能够携带射流的一组聚合物,在化学电阻器(叉指微电极,IDE)上易于组装。这种高度敏感的传感器已经能够检测相关医学意义的痕迹中的气体,主要是由于传感器的高密度高密度。改变载体,可以调整对气体的敏感度。通过形态分析(纹理分析)和气体相互作用前后的电气测量,突出了所选载体聚合物(不同分子量,PEO,PEOPYLICOLICONE,PVP和聚苯乙烯,PS)和电气测量的主要作用。

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