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Electrospun PEO/PEDOT:PSS Nanofibers for Wearable Physiological Flex Sensors

机译:Electromun PEO / PEDOT:PSS纳米纤维用于可穿戴的生理柔性传感器

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摘要

Flexible sensors are fundamental devices for human body monitoring. The mechanical strain and physiological parameters coupled sensing have attracted increasing interest in this field. However, integration of different sensors in one platform usually involves complex fabrication process-flows. Simplification, even if essential, remains a challenge. Here, we investigate a piezoresistive and electrochemical active electrospun nanofibers (NFs) mat as the sensitive element of the wearable physiological flex sensing platform. The use of one material sensitive to the two kinds of stimuli reduces the process-flow to two steps. We demonstrate that the final NFs pH-Flex Sensor can be used to monitor the deformation of a human body joint as well as the pH of the skin. A unique approach has been selected for pH sensing, based on Electrochemical Impedance Spectroscopy (EIS). A linear dependence of the both the double layer capacitance and charge transfer re-sistance with the pH value was obtained by EIS, as well as a linear trend of the electrical resistance with the bending deformation. Gauge factors values calculated after the bending test were 45.84 in traction and 208.55 in compression mode, reflecting the extraordinary piezoresistive behavior of our nanostructured NFs.
机译:灵活的传感器是人体监测的基础设备。机械应变和生理参数耦合传感引起了对该领域的越来越兴趣。然而,在一个平台中的不同传感器的集成通常涉及复杂的制造过程流程。简化,即使必要,仍然是一个挑战。在这里,我们研究了一种压阻和电化学活性电纺纳米纤维(NFS)垫作为可穿戴生理柔性感应平台的敏感元件。使用对两种刺激敏感的一种材料将过程流量降低到两个步骤。我们证明最终NFS pH-柔性传感器可用于监测人体关节的变形以及皮肤的pH。基于电化学阻抗光谱(EIS),已经选择了一种针对pH感测的独特方法。通过EIS获得具有pH值的双层电容和电荷转移重新吸引的双层电容和电荷转移的线性依赖性,以及具有弯曲变形的电阻的线性趋势。弯曲试验后计算的仪表因子值为45.84,压缩模式为45.84,反映了纳米结构NFS的非凡压阻性行为。

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